Humidification structure, air processor and air humidifier
By setting baffles in the humidification structure to control the water flow direction, the problem of uneven wetting of the wet curtain body is solved, and the uniform distribution of water in the wet curtain body and the uniformity of humidification effect are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 深圳市净享智能生活科技有限公司
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-19
AI Technical Summary
The humidification structure has an uneven wetting problem at different locations on the wet curtain body, which leads to uneven moisture blown out by the air handling unit.
Design a humidification structure including a wet curtain body and a support assembly. The support assembly includes a water inlet, which is provided with a tank and a water outlet. A baffle is provided near the water inlet, and the baffle size gradually decreases for the water outlet further away from the water inlet. The baffle controls the water flow direction to ensure uniform water distribution.
It improves the uniformity of water within the evaporative cooling pad, ensuring uniform humidification and enhancing the humidification uniformity and effectiveness of the air processor.
Smart Images

Figure CN224261858U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air treatment technology, and in particular to a humidification structure, an air processor, and an air humidifier. Background Technology
[0002] In air handling units, the humidification structure effectively increases air humidity, making indoor air more humid and comfortable. Generally, an external water source needs to be introduced into the humidification structure through a water supply system, and then the humidified structure is used to increase the humidity of the airflow.
[0003] However, when the water from the water supply system flows from the water inlet to the humidification structure, there is often more water near the water inlet and less water far away from the water inlet. This causes uneven wetting of different parts of the wet curtain body, resulting in uneven moisture blown out by the air handling unit. Utility Model Content
[0004] The purpose of this application is to provide a humidification structure that solves the technical problem of uneven wetting in humidification structures.
[0005] A further objective of this application is to provide an air processor that includes a humidification structure.
[0006] A further objective of this application is to provide an air humidifier that includes a humidification structure.
[0007] In accordance with the first aspect of the purpose of this application, this application provides a humidification structure, comprising:
[0008] wet curtain body;
[0009] A support assembly for supporting the wet curtain body; the support assembly includes a water inlet located on the upper part of the wet curtain body, for guiding the water flow that converges through the water inlet point to the wet curtain body.
[0010] The water inlet includes a tank with an upward opening. At least two water outlets are arranged at intervals along the water flow direction at the bottom of the tank. The at least two water outlets are used to guide the water in the tank to the wet curtain body.
[0011] At least one outlet hole located near the water inlet has a baffle formed on the outer periphery of the portion facing the water inlet. The baffle is used to prevent water from flowing into the corresponding outlet hole along the water flow direction away from the water inlet.
[0012] Optionally, the water outlet is divided into at least one first water outlet located near the water inlet and at least one second water outlet located away from the water inlet, and a baffle is formed on the outer periphery of the portion of the at least one first water outlet facing the water inlet.
[0013] Optionally, starting from the water outlet closest to the water inlet, a predetermined number of first water outlets are formed with baffles along the direction away from the water inlet.
[0014] Optionally, at least two water outlets are evenly distributed at the bottom of the tank along the direction of water flow away from the water inlet.
[0015] Optionally, the tank includes an inner wall and an outer wall;
[0016] The distance between each water outlet and the inner or outer wall is the same.
[0017] Optionally, the tank includes an inner wall and an outer wall;
[0018] The water outlet is located near the inner wall.
[0019] Alternatively, the baffle extends from the outer periphery of the outlet near the inlet point to the inner wall.
[0020] Optionally, at least two water outlets are located on at least one side of the water inlet point.
[0021] Optionally, the tank includes a first end and a second end, and the liquid in the tank flows between the first end and the second end;
[0022] The water inlet is located at the first end or the second end, and at least two water outlets are located on one side of the water inlet.
[0023] Optionally, at least two water outlets are arranged symmetrically on both sides of the water inlet.
[0024] Optionally, the tank includes a first end and a second end, and the liquid in the tank flows between the first end and the second end;
[0025] The water inlet is located between the first end and the second end, and at least two water outlets are provided on both sides of the water inlet.
[0026] Optionally, the tank is annular.
[0027] Optionally, along the water flow direction away from the water inlet, the size of the baffle on each water outlet gradually decreases in a first preset direction; wherein, the first preset direction is the direction parallel to the plane where the bottom of the tank is located.
[0028] Optionally, the ratio of the dimension of the baffle in the first preset direction to the outer perimeter of the water outlet is 0 to 0.9; wherein, the first preset direction is the direction parallel to the plane where the bottom of the tank is located.
[0029] Optionally, along the water flow direction away from the water inlet, the size of the baffle on each water outlet gradually decreases in a second preset direction, wherein the second preset direction is the direction perpendicular to the plane where the bottom of the tank is located.
[0030] Optionally, the ratio of the dimension of the baffle in the second preset direction to the dimension of the inner or outer sidewall in the second preset direction is 0.3-0.8, wherein the second preset direction is the direction perpendicular to the plane where the bottom of the tank is located.
[0031] Optionally, a water guide plate is provided at at least one water outlet.
[0032] Optionally, at least one of the water outlets with baffles is provided with a water guide plate on the side away from the water inlet;
[0033] At least one outlet without a baffle is provided with a water guide plate on the side near the water inlet or the side away from the water inlet.
[0034] Optionally, the water inlet plate is disposed inside the water outlet and extends in a direction toward the center of the water outlet.
[0035] Optionally, the support assembly also includes a cover plate, which includes a body that covers the opening of the groove.
[0036] The main body is provided with a through hole, and the position of the through hole corresponds to the water inlet point so that the external water source supplies water to the tank through the through hole;
[0037] A water baffle is protruding from the outer side of the cover plate, and the water baffle is located outside the through hole; wherein the length of the water baffle is greater than or equal to the length of the through hole.
[0038] Optionally, a first limiting portion is provided at the top of the inner sidewall and / or the outer sidewall;
[0039] The bottom of the cover plate is provided with a second limiting part corresponding to the first limiting part; when the cover plate is placed on the opening of the groove, the first limiting part and the second limiting part cooperate to fix the cover plate.
[0040] Optionally, the first limiting part is a groove, and the second limiting part is a protrusion; or
[0041] The first limiting part is a protrusion, and the second limiting part is a groove.
[0042] Optionally, the cover plate also includes:
[0043] An inner plate extending downwards from the inside of the main body covers the outer side wall of the water inlet when the cover plate covers the water inlet; and
[0044] The outer side plate, which extends downward from the outer side of the main body, covers the outer side wall of the water inlet when the cover plate covers the water inlet.
[0045] The support assembly has a step on the inside, and when the cover plate covers the water inlet, the bottom of the inner plate abuts against the step.
[0046] Optionally, the support assembly also includes a support portion that extends downward from the water inlet portion and is supported on the inner side of the wet curtain body;
[0047] The support includes ribs forming a grid;
[0048] The ribs include multiple first ribs extending along a first preset direction and multiple second ribs extending along a second preset direction.
[0049] In accordance with the second aspect of this application, this application also provides an air processor, including the humidification structure described above.
[0050] In accordance with the purpose of the third aspect of this application, this application also provides an air humidifier, including the humidification structure described above.
[0051] In this solution, the humidification structure may include a wet curtain body and a support assembly. The support assembly may include a water inlet, which is located above the wet curtain body and has at least two water outlets. A baffle is installed at the water outlet near the water inlet to effectively prevent all the water flowing from the water inlet from flowing into the outlet near the water inlet. Instead, the water first flows into the outlet further away from the water inlet, and then, due to the rebound of the water flow by the side wall of the tank, it flows back to the outlet near the water inlet. This prevents all the water from flowing into the wet curtain body through the outlet near the water inlet, while also taking into account the water inlet at the outlets farther from the water inlet, further improving the uniformity of the water flow to the wet curtain body and making the humidification structure more evenly saturated.
[0052] In addition, this solution can be that some of the first water outlets closer to the water inlet are continuously equipped with baffles, or all of the first water outlets are continuously equipped with baffles. By blocking the water flow from the water inlet, the uniformity of the water flow from the water outlet to the wet curtain body is improved.
[0053] In addition, in this scheme, the size of the baffle of the first water outlet gradually decreases along the direction away from the water inlet. Since the water flow rate and velocity are large near the water inlet, a larger baffle is needed to block it. Conversely, the water flow rate and velocity are small away from the water inlet, so a smaller baffle is needed to block it. This ensures that the amount of water entering each first water outlet is equal, thereby making the water distribution in the wet curtain body more uniform.
[0054] Furthermore, in this embodiment, at least two water outlets are evenly distributed along the water flow direction away from the water inlet point at the first bottom of the first tank. In this embodiment, "evenly distributed" means that the distance between two adjacent water outlets is the same. When the water outlets are evenly distributed at the first bottom of the first tank, the distribution of water entering the evaporative cooling pad body from the water outlets is also more uniform, thereby making the distribution of moisture during humidification by the evaporative cooling pad body more uniform.
[0055] Furthermore, the water outlet of this design can be located either externally between the inner and outer walls of the first bottom of the first tank, or near the inner wall of the first bottom of the first tank. When the water outlet is located between the inner and outer walls of the first tank, water flows through the positions between the water outlet and the inner wall, and between the water outlet and the outer wall, resulting in a more uniform water flow. When the water outlet is located near the inner wall of the first tank, water flows through the positions between the water outlet and the outer wall of the first bottom of the first tank, concentrating the water flow and making it easier to flow away from the water inlet. Additionally, when the water outlet is located near the inner wall of the first bottom of the first tank, as water flows from the water outlet to the evaporative cooling pad, more water gathers on the inner side of the evaporative cooling pad, making it easier for the liquid inside the evaporative cooling pad to evaporate from the inside, thus improving the humidification effect of the evaporative cooling pad.
[0056] In addition, in this embodiment, the baffle of the water outlet closer to the water inlet can be designed to be larger, while the baffle of the water outlet further away from the water inlet can be designed to be smaller. By designing it in a gradual form along the water flow direction away from the water inlet, it is possible to ensure that the water flow from each water outlet to the wet curtain body is uniform, thereby ensuring the uniform wetting of the wet curtain body.
[0057] In addition, at least some of the water outlets in this solution are equipped with water guide plates. The water guide plates guide water from the first tank into the water outlet and then flow to the wet curtain body. On the one hand, this can avoid the situation where water cannot enter the water outlet due to surface tension. On the other hand, the water guide plates can control the amount of water flowing into the water outlet, further ensuring the uniformity of water entering each water outlet.
[0058] Furthermore, this solution can provide a first limiting part at the top of the inner wall, or at the top of the outer wall, or both at the top of the inner and outer walls. A second limiting part corresponding to the first limiting part is provided at the bottom of the cover plate. Thus, when the cover plate is placed over the opening, the first and second limiting parts can limit the cover plate, preventing misalignment between the cover plate and the first groove after placement.
[0059] The above and other objects, advantages and features of this application will become more apparent to those skilled in the art from the following detailed description of specific embodiments in conjunction with the accompanying drawings. Attached Figure Description
[0060] The following sections will describe some specific embodiments of this application in detail by way of example and not limitation, with reference to the accompanying drawings. The same reference numerals in the drawings denote the same or similar parts or components. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0061] Figure 1 This is a schematic structural diagram of an air processor according to a specific embodiment of this application;
[0062] Figure 2 This is a schematic structural diagram of a humidification structure according to a specific embodiment of this application;
[0063] Figure 3 This is a schematic exploded view of a humidification structure according to a specific embodiment of this application;
[0064] Figure 4 This is a top view of the water inlet and support according to a specific embodiment of this application;
[0065] Figure 5 This is a partially enlarged cross-sectional view of the water inlet and the support portion according to a specific embodiment of this application;
[0066] Figure 6 This is a top view of the water inlet and support according to another specific embodiment of this application;
[0067] Figure 7 yes Figure 4 A magnified view of a section at point B in the middle;
[0068] Figure 8 This is a schematic structural diagram of a cover plate according to a specific embodiment of this application;
[0069] Figure 9 This is a bottom view of a cover plate according to a specific embodiment of this application;
[0070] Figure 10 This is a partially enlarged cross-sectional view of the cover plate and the water inlet according to a specific embodiment of this application;
[0071] Figure 11 This is a schematic structural diagram of the water inlet and support according to a specific embodiment of this application;
[0072] Figure 12 This is a schematic structural diagram of a humidification structure according to a specific embodiment of this application;
[0073] Figure 13 This is a schematic exploded view of a humidification structure according to a specific embodiment of this application;
[0074] Figure 14 This is a schematic structural diagram of the bottom surface of a base according to a specific embodiment of this application;
[0075] Figure 15 This is a schematic structural diagram of a water receiving tray according to a specific embodiment of this application;
[0076] Figure 16This is a schematic cross-sectional view of a water receiving tray according to a specific embodiment of this application;
[0077] Figure 17 This is a schematic structural diagram of a base according to a specific embodiment of this application;
[0078] Figure 18 This is a cross-sectional structural diagram of a base disposed above a water receiving tray according to a specific embodiment of this application;
[0079] Figure 19 This is a schematic structural diagram of the bottom surface of a water receiving tray according to a specific embodiment of this application.
[0080] Figure 20 This is a schematic structural diagram of a support component and a base according to a specific embodiment of this application;
[0081] Figure 21 This is a cross-sectional view of a base according to a specific embodiment of this application;
[0082] Figure 22 for Figure 20 A magnified view of a portion of point Y in the middle;
[0083] Figure 23 for Figure 20 A magnified view of a section at point X;
[0084] Figure 24 for Figure 20 A partial enlarged view of another embodiment at point Y.
[0085] Explanation of reference numerals in the attached figures:
[0086] Air processor - 10; Air outlet - 11; Humidification structure - 100; Wet curtain body - 200; Support assembly - 300; First trough - 310; Opening - 311; First bottom - 312; Water outlet - 313; First water outlet - 313a; Second water outlet - 313b; Baffle - 314; Inner wall - 315; Outer wall - 316; First end - 317; Second end - 318; Water guide plate -319; First limiting part -3151; Cover plate -320; Body -321; Through hole -322; Water baffle -323; Second limiting part -324; Inner side plate -325; Outer side plate -326; Handle -327; Step -330; Support part -340; Rib -341; First rib -341a; Second rib -341b; Reinforcing part -342; First limiting member -350; First groove - 360; First baffle - 370; First snap-fit - 390; Outer side - 391; Upper side - 392; Lower side - 393; First inclined surface - 394; Second inclined surface - 395; Sixth inclined surface - 396; Base - 400; Crossbeam - 410; Middle plate - 420; Inner plate - 430; Outer plate - 440; Second groove - 450; First magnetic clasp - 460; Third groove - 470; Second snap-fit Part-480; Fourth groove-481; Bottom-4811; Upper side-4812; Lower side-4813; Third slope-482; Fourth slope-483; Fifth slope-484; Water tray-500; Second limiting part-510; Guide section-511; Limiting section-512; Second baffle-520; Second trough-530; Boss-540; Second magnetic suction part-550; Water outlet-560. Detailed Implementation
[0087] In the description of this embodiment, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", "front", "rear", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0088] As a specific embodiment of this application, such as Figure 1 As shown, this embodiment provides a humidification structure 100, which can be part of an air processor 10, and can humidify the air when the air processor 10 processes the air.
[0089] In one example, the air processor 10 may include an airflow generating component (not shown) for generating an airflow and ejecting the airflow from the outlet 11. A humidifying structure 100 is disposed in the internal chamber of the air processor 10, downstream of the airflow generating component, for increasing the humidity of the airflow generated by the airflow generating component, thereby achieving a humidifying effect.
[0090] In one embodiment, such as Figure 2 and Figure 3 As shown, the humidification structure 100 of this embodiment may include a wet curtain body 200 and a support assembly 300. The support assembly 300 is used to support the wet curtain body 200. Specifically, as shown... Figure 3 and Figure 4 As shown, the support assembly 300 includes a water inlet located on the upper part of the evaporative cooling pad body 200, for guiding the water flow entering through water inlet point A to the evaporative cooling pad body 200. Water inlet point A refers to the location where an external water source enters the water inlet. In other words, an external water source device can draw water into the water inlet at water inlet point A, and then the water flow is guided to the evaporative cooling pad body 200 through the water inlet. This application does not limit the type of external water source device.
[0091] Specifically, the water inlet can be located at the top or upper-middle part of the wet curtain body 200, thereby ensuring that the water flowing in from the water inlet point A can have a good wetting effect on the wet curtain body 200. It is worth noting that, for ease of description, the following embodiments and figures are illustrated with the water inlet located at the top of the wet curtain body 200 as a schematic representation, and this application is not limited thereto.
[0092] In one embodiment, the water inlet may include a first tank 310 with an upward-facing opening 311. The first bottom 312 of the first tank 310 is provided with at least two water outlets 313 spaced apart along the water flow direction. These at least two water outlets 313 are used to guide water from the first tank 310 to the wet curtain body 200. A baffle 314 is formed on the outer periphery of the portion of at least one water outlet 313 located near the water inlet point A, facing the water inlet point A. The baffle 314 is used to block water flow in a direction away from the water inlet point A. Figure 4 and Figure 6 (In the direction indicated by the dashed arrow) enter the corresponding water outlet 313.
[0093] Specifically, the first tank 310 can be annular, elliptical, triangular, square, or flat, etc., and the specific shape can be set according to actual needs, and is not limited here. It is understood that the accompanying drawings of this application are only examples of the shape of the first tank 310, and this application does not limit the shape of the first tank 310. Specifically, in this embodiment, at least two water outlets 313 are provided at the water inlet. A baffle 314 is provided on the outer periphery of the part of the water outlet 313 near the water inlet A, which can prevent all the water flow from the water outlet 313 near the water inlet A to the wet curtain body 200, so as to ensure that sufficient water flow enters the rear water outlet 313, thereby enabling the wet curtain body 200 to be more evenly wetted, and further improving the uniformity of humidification of the humidification structure 100.
[0094] In one embodiment, two or more water inlet points A can be provided. In other words, the external water source device can draw water into the water inlet from multiple locations (i.e., water inlet points A). The number and specific locations of water inlet points A can be set according to actual needs and are not limited here.
[0095] In a specific example, each water inlet point A can be symmetrically arranged above the opening of the first tank 310. At least one water outlet 313 located near water inlet point A has a baffle 314 on the outer periphery of the side facing the corresponding water inlet point A. For example, two water inlets A are symmetrically arranged in the annular first tank: water inlet point one and water inlet point two. Water outlet a and water outlet b are located near the two sides of water inlet point one, respectively. Water outlet c and water outlet d are located near the two sides of water inlet point two, respectively. In this case, water outlet a and water outlet b have baffle 314 on the outer periphery of the side facing water inlet point 1, and water outlet c and water outlet d have baffle 314 on the outer periphery of the side facing water inlet point 2.
[0096] Understandably, in practical applications, the baffle 314 of the water outlet 313 can be set according to the number and position of the water outlet 313 and the number and position of the water inlet A, in order to improve the uniformity of water inlet, and no limitation is made here.
[0097] In one example, only one outlet 313 located near the water inlet A may be equipped with a baffle 314. Water flows from the side of the baffle 314 to the outlet 313 behind it, and after being bounced off the side wall of the first tank 310, it flows back to the outlet 313. In another example, two or more outlets 313, fewer than the total number of outlets 313, may be equipped with baffles 314. Optionally, baffles 314 may be installed on several consecutive outlets 313 along a direction away from the water inlet A; alternatively, baffles 314 may be installed on several discontinuous outlets 313. Preferably, baffles 314 are installed on outlets 313 located closer to the water inlet A. In another example, baffles 314 may be provided at all water outlets 313. Optionally, the size of the baffles 314 on each water outlet 313 may gradually decrease along the direction away from the water inlet point A, so that the amount of water entering each water outlet 313 is equal, thereby making the water distribution in the wet curtain body 200 more uniform.
[0098] As one specific embodiment, such as Figure 4 As shown, the water outlet 313 in this embodiment is divided into at least one first water outlet 313a located near the water inlet A and at least one second water outlet 313b located away from the water inlet A. A baffle 314 is formed on the outer periphery of the portion of the at least one first water outlet 313a facing the water inlet A. Specifically, the first water outlet 313a and the second water outlet 313b are two types of water outlets 313 divided according to their distance from the water inlet A, wherein the distance between the first water outlet 313a and the water inlet A is smaller than the distance between the second water outlet 313b and the water inlet A.
[0099] In this embodiment, a baffle 314 is provided at the water outlet 313 near the water inlet A to effectively prevent all the water flowing near the water inlet A from flowing out of the water outlet 313. However, no baffle 314 is needed at the water outlet 313 far from the water inlet A. Thus, the water does not flow directly from the first water outlet 313a near the water inlet A to the wet curtain body 200 under the obstruction of the baffle 314. Instead, it first flows into the second water outlet 313b far from the water inlet A, and then flows back into the first water outlet 313a due to the rebound of the water flow through the side wall of the first tank 310. In this way, the water inlet A can be prevented from flowing completely into the wet curtain body 200 from the first water outlet 313a near the water inlet A, which further improves the uniformity of the water flowing into the wet curtain body 200.
[0100] Specifically, in one example, there may be one first water outlet 313a, which is equipped with a baffle 314. Water flows from the side of the baffle 314 to the second water outlet 313b, and then flows back to the first water outlet 313a. In another example, there may be multiple first water outlets 313a, with baffles 314 installed on only some of them. In this example, baffles 314 may be installed at several consecutive first water outlets 313a, or at several discontinuous first water outlets 313a. Preferably, baffles 314 are installed at the first water outlets 313a closer to the water inlet point A. In yet another example, there may be multiple first water outlets 313a, and baffles 314 are installed at all of them.
[0101] As a further specific embodiment, in this embodiment, preferably starting from the first water outlet 313a closest to the water inlet point A, a predetermined number of first water outlets 313a are continuously formed with baffles 314 along a direction away from the water inlet point A. The predetermined number can be set according to actual needs and is not limited here.
[0102] In this embodiment, baffles 314 may be continuously provided on some of the first water outlet holes 313a closer to the water inlet point A, or baffles 314 may be continuously provided on all the first water outlet holes 313a. By blocking the water flow from the water inlet point A through the baffles 314, the uniformity of the water flow from the water outlet holes 313 to the wet curtain body 200 is improved.
[0103] In one embodiment, along the direction away from the water inlet point A, the size of the baffle of the first water outlet 313a provided with baffle 314 gradually decreases. Since the water flow rate and velocity are large near the water inlet point A, a larger baffle is needed to block it. Conversely, the water flow rate and velocity are small away from the water inlet point A, so a smaller baffle is needed to block it. This ensures that the amount of water entering each first water outlet 313a is equal, thereby making the water distribution in the wet curtain body more uniform.
[0104] In one embodiment, at least two water outlets 313 are evenly distributed along the water flow direction away from the water inlet point A at the first bottom 312 of the first tank 310. In this embodiment, "evenly distributed" means that the distance between two adjacent water outlets 313 is the same. When the water outlets 313 are evenly distributed at the first bottom 312 of the first tank 310, the distribution of water entering the wet curtain body 200 from the water outlets 313 is also more uniform, thereby making the distribution of moisture when the wet curtain body 200 humidifies more uniform.
[0105] Of course, as another embodiment, the water outlet holes 313 can also be distributed unevenly along the water flow direction away from the water inlet point A. When unevenly distributed, the spacing and pattern of the water outlet holes 313 can be designed in conjunction with the arrangement of the baffle 314 to ensure the uniformity of the water flow from the water inlet to the wet curtain body 200.
[0106] Specifically, the "uneven distribution" can manifest in several ways: In one example, the distances between two adjacent water outlets 313 are not exactly the same, or the distances between any two adjacent water outlets 313 are not the same. In other examples, the first tank 310 may include an inner wall 315 and an outer wall 316, and among the multiple water outlets 313, at least some water outlets 313 are at a different distance from the inner wall 315 than other water outlets 313 are at a different distance from the inner wall 315.
[0107] As a specific example, such as Figure 4 and Figure 5 As shown, the first tank 310 in this embodiment includes an inner wall 315 and an outer wall 316. A water outlet 313 is located near the inner wall 315. A baffle 314 extends from the outer periphery of the water outlet 313 near the water inlet A to the inner wall 315. In other words, one side of the baffle 314 is connected to the inner wall 315, so that the water flowing from the water inlet A flows from the other side of the water outlet 313 to the rear water outlet 313.
[0108] In this embodiment, when water from inlet point A enters the first tank 310 and flows away from inlet point A to outlet hole 313, it is blocked by baffle 314 of outlet hole 313. The water flows along the position between outlet hole 313 and outer wall 316, bypasses baffle 314, and then flows into wet curtain body 200 through outlet hole 313. Similarly, due to the obstruction of baffle 314, water that has not yet flowed out of outlet hole 313 continuously flows away from inlet point A to the next outlet hole 313 until the water enters the rear outlet hole 313. Then, the action of inner wall 315 and outer wall 316 bounces the water back, so that the water flows towards inlet point A to the outlet hole 313 with baffle 314 in front.
[0109] As another specific embodiment, such as Figure 6 As shown, the first tank 310 in this embodiment may include an inner wall 315 and an outer wall 316. The distance between each water outlet 313 and the inner wall 315 is the same as the distance between each water outlet 313 and the outer wall 316. In other words, each water outlet 313 is located at the middle position between the inner wall 315 and the outer wall 316 of the first tank 310.
[0110] At this time, the water entering the first tank 310 from the water inlet A will flow along the first bottom 312 of the first tank 310 to the water outlet 313. When a baffle 314 is installed on the outer periphery of the part of the water outlet 313 near the water inlet A, the water will flow along the position between the water outlet 313 and the inner side wall 315, and between the water outlet 313 and the outer side wall 316, to the side of the water outlet 313 away from the water inlet A, and then flow out of the water outlet 313 after bypassing the baffle 314. Due to the obstruction of the baffle 314, the liquid that has not yet flowed out of the water outlet 313 will continue to flow in the direction away from the water inlet A to the next water outlet 313, until the water flows from the last water outlet 313 to the wet curtain body 200.
[0111] Specifically, when the water outlet 313 is located in the middle position between the inner wall 315 and the outer wall 316 of the first tank 310, water flows through the positions of the first tank 310 between the water outlet 313 and the inner wall 315, and between the water outlet 313 and the outer wall 316, making the water flow more uniform. When the water outlet 313 is located on the side of the first tank 310 closer to the inner wall 315, water can flow through the first bottom 312 of the first tank 310 located between the water outlet 313 and the outer wall 316, making the water flow concentrated and easier to flow away from the water inlet point A. Furthermore, when the water outlet 313 is located on the side of the first bottom 312 of the first tank 310 near the inner wall 315, when water flows from the water outlet 313 to the wet curtain body 200, more water gathers in the inner part of the wet curtain body 200, which makes it easier for the liquid in the wet curtain body 200 to evaporate from the inside, thereby further improving the humidification effect of the wet curtain body 200.
[0112] As a specific embodiment of this application, at least two water outlets 313 are distributed on at least one side of the water inlet point A. Specifically, the at least two water outlets 313 may be arranged on one side of the water inlet point A, or they may be arranged on both sides of the water inlet point A.
[0113] For example, zero, one, or more water outlet holes 313 can be provided on one side of the water inlet point A, while one or more water outlet holes 313 can be provided on the other side of the water inlet point A. When at least two water outlet holes 313 are arranged on both sides of the water inlet point A, the number of water outlet holes 313 on both sides of the water inlet point A can be the same or different.
[0114] In one embodiment, such as Figure 4 or Figure 6As shown, the first tank 310 may include a first end 317 and a second end 318, and liquid within the first tank 310 flows between the first end 317 and the second end 318. The water inlet A is located at either the first end 317 or the second end 318, and at least two water outlets 313 are disposed on one side of the water inlet A. Specifically, when the first tank 310 has an end, and the water inlet A is located at that end, all water outlets 313 may be arranged on one side of the water inlet A.
[0115] In this embodiment, the number of water outlets 313 on one side of the water inlet point A is zero, while the number of water outlets 313 on the other side is multiple. At this time, the liquid entering the first tank 310 from the water inlet point A will flow along the first tank 310 in one direction and enter the wet curtain body 200 through at least two water outlets 313.
[0116] In another embodiment, the water inlet A may be located between the first end 317 and the second end 318, and at least two water outlets 313 are provided on both sides of the water inlet A. The number of water outlets 313 located on both sides of the water inlet A may be the same or different.
[0117] Specifically, at least two water outlets 313 can be arranged along the direction of the water flow from the water inlet A. When the water flow from the water inlet A flows in only one direction within the first tank 310, at least two water outlets 313 can be arranged on the side of the water inlet A facing the direction of the incoming water flow. When the water flow from the water inlet A flows in two directions within the first tank 310, at least two water outlets 313 can be arranged on both sides of the water inlet A.
[0118] In another specific embodiment, at least two water outlets 313 are symmetrically arranged along both sides of the water inlet point A. In this embodiment, the first tank 310 can be annular, linear, or square, etc.
[0119] In this embodiment, there are one or more outlet holes 313 on both sides of the water inlet A, and the number is the same and they are arranged symmetrically. At this time, the liquid entering the first tank 310 from the water inlet A will flow in opposite directions from the water inlet A (e.g., Figure 4 and Figure 6 (As shown by the dashed arrow in the middle), the water then flows symmetrically from the outlet holes 313 on both sides to the wet curtain body 200.
[0120] In one example, such as Figure 4 As shown, there can be 4 water outlet holes 313, with two on each side of the water inlet point A. The liquid entering the first tank 310 from the water inlet point A can flow from the water inlet point A to both sides, flowing to the two water outlet holes 313 on both sides of the water inlet point A, and then flowing to the wet curtain body 200.
[0121] As a specific embodiment of this application, in this embodiment, along the water flow direction away from the water inlet A, the size of the baffle 314 on each water outlet 313 gradually decreases in a first preset direction; wherein, the first preset direction is a direction parallel to the plane where the first bottom 312 of the first tank 310 is located, or in other words, a horizontal direction. Specifically, the first preset direction in this embodiment is not a fixed direction, but rather the direction in which the baffle 314 extends in a direction parallel to the plane where the first bottom 312 is located. For example, if the baffle 314 extends circumferentially along the water outlet 313, then the first preset direction is the direction along the circumferential direction of the water outlet 313; if the baffle 314 does not extend circumferentially along the water outlet 313, then the first preset direction is the direction in which the baffle 314 extends in a plane parallel to the plane where the first bottom 312 is located.
[0122] Specifically, since water continuously enters the first tank 310 from the water inlet point A along the water flow direction away from the water inlet point A, the water flow rate and velocity are greater closer to the water inlet point A. In this embodiment, the baffle 314 of the water outlet 313 closer to the water inlet point A can be designed to be larger, while the baffle 314 of the water outlet 313 further away from the water inlet point A can be designed to be smaller. By designing it in a gradual form along the water flow direction away from the water inlet point A, it can be ensured that the water flow from each water outlet 313 to the wet curtain body 200 is uniform, thereby ensuring the uniform wetting of the wet curtain body 200.
[0123] In one example, along the water flow direction away from the inlet point A, the size of the baffle 314 on each outlet 313 gradually decreases in the first preset direction until it disappears. In this embodiment, the ratio of the size of the baffle 314 in the first preset direction to the outer circumference of the outlet 313 can range from 0 to 0.8. For example, along the water flow direction away from the inlet point A, the ratio of the size of the baffle 314 in the first preset direction to the outer circumference of the outlet 313 can be 0.8, 0.7, 0.6, ... sequentially.
[0124] Of course, if there are only two water outlets 313 on each side of the water inlet A, a baffle 314 is designed at the water outlet 313 closer to the water inlet A on each side, and no baffle 314 is designed at the water outlet 313 farther away from the water inlet A, so as to improve the uniformity of water flow.
[0125] As a specific embodiment of this application, the ratio of the dimension of the baffle 314 in the first preset direction to the outer perimeter of the water outlet 313 can be in the range of 0.3 to 0.8. In one example, the ratio of the dimension of the baffle 314 near the water inlet point A to the outer perimeter of the corresponding water outlet 313 can be about 0.5. In this way, the water inlet volume of the water outlet 313 with the baffle 314 is halved compared to the case where the baffle 314 is not set, thereby improving the uniformity of water flow.
[0126] Understandably, the dimensions of the baffle 314 and its ratio to the dimensions of the outlet hole 313 can be determined based on the dimensions of the first tank 310 (such as length, width, and depth) and the flow rate and velocity of the water entering from the inlet point A, and this application does not impose any limitations on them.
[0127] As a specific embodiment of this application, in this embodiment, along the water flow direction away from the water inlet A, the size of the baffle 314 on each water outlet 313 gradually decreases in a second preset direction, wherein the second preset direction is a direction perpendicular to the plane where the first bottom 312 of the first tank 310 is located, or in other words, a vertical direction. Specifically, in this embodiment, the second preset direction is perpendicular to the first preset direction. In one example, along the water flow direction away from the water inlet A, the size of the baffle 314 on each water outlet 313 gradually decreases in the second preset direction until it disappears.
[0128] Generally, the flow rate and velocity of the water flow near the water inlet A are greater than those far from the water inlet A. In this embodiment, the baffle 314 of the water outlet 313 near the water inlet A is made larger in the second preset direction than the baffle 314 of the water outlet 313 far from the water inlet A, so as to ensure the uniformity of the water flow at different distances from the water inlet A.
[0129] Of course, as another embodiment, in this embodiment, in the water flow direction away from the water inlet point A, the baffle 314 at the water outlet 313 not only gradually decreases in size in the first preset direction, but also gradually decreases in size in the second preset direction, so as to satisfy that the water flowing from different water outlets 313 to the wet curtain body 200 is more uniform.
[0130] In this embodiment, the second preset direction is the height direction when the humidification structure 100 is normally placed. Generally, the inner wall 315 and the outer wall 316 have the same dimensions in the second preset direction, while the baffle 314 is disposed in the first tank 310, and its dimensions are preferably lower than the dimensions of the inner wall 315 and the outer wall 316, or the dimensions of the baffle 314 in the second preset direction are the same as the dimensions of the inner wall 315 and the outer wall 316. Since the baffle 314 needs to block water from entering the outlet hole 313, the dimensions of the baffle 314 in the second preset direction cannot be too low.
[0131] Specifically, in one embodiment, the ratio of the dimension of the baffle 314 in the second preset direction to the dimension of the inner sidewall 315 or the outer sidewall 316 in the second preset direction can be 0.3 to 0.8.
[0132] Understandably, the dimensions of the baffle 314 and its ratio to the dimensions of the inner wall 315 or the outer wall 316 can be determined based on the dimensions of the first tank 310 (such as length, width, and depth) and the water flow rate and velocity entering from the water inlet point A, and this application does not impose any limitations on them.
[0133] In one example, the ratio of the dimension of the baffle 314 in the second preset direction to the dimension of the inner wall 315 or the outer wall 316 can be about 0.5. If the dimensions of the inner wall 315 and the outer wall 316 in the second preset direction are 6 mm, the dimension of the baffle 314 in the second preset direction can be 3 mm.
[0134] As a specific embodiment of this application, such as Figure 4 , Figure 6 and Figure 7 As shown, at least some of the water outlets 313 in this embodiment are provided with water guide plates 319.
[0135] Specifically, in this embodiment, at least some of the water outlets 313 are provided with water guiding plates 319. The water guiding plates 319 guide water from the first tank 310 into the water outlets 313 and then flow to the wet curtain body 200. On the one hand, this can avoid the situation where water cannot enter the water outlets 313 due to surface tension. On the other hand, the water guiding plates 319 can control the amount of water flowing into the water outlets 313, thereby further ensuring the uniformity of water entering each water outlet 313.
[0136] Understandably, the size and position of the water guide plate 319 on each water outlet 313 may be the same or different. The specific settings can be made according to actual needs or according to factors such as the position and size of the water outlet 313, the size of the first tank 310, and the amount of water flowing into the water inlet A. This application does not impose any limitations.
[0137] In one embodiment, the water outlet 313, which at least partially has a baffle 314, is provided with a water guide plate 319 on the side away from the water inlet A. The water outlet 313, which at least partially does not have a baffle 314, is provided with a water guide plate 319 on the side near the water inlet A or on the side away from the water inlet A.
[0138] Generally, since the baffle 314 is located on the side near the water inlet A at the water outlet 313, the water needs to flow into the water outlet 313 from the side away from the water inlet A. To ensure that the water flows smoothly into the water outlet 313, a water guide plate 319 can be installed on the side of the water outlet 313 away from the water inlet A. Preferably, a water guide plate 319 is installed on the side away from the water inlet A of all water outlets 313 where the baffle 314 is located.
[0139] To ensure smooth water flow to the outlet 313 where no baffle 314 is provided, a water guide plate 319 can be installed at any position of the outlet 313. Preferably, the water guide plate 319 is installed on the side of the outlet 313 closest to or furthest from the inlet point A. More preferably, the water guide plate 319 can be installed on the side of all outlets 313 without baffle 314 closest to the inlet point A.
[0140] Specifically, in this embodiment, the water guide plate 319 is disposed inside the water outlet hole 313 and extends in a direction toward the center of the water outlet hole 313. The water guide plate 319 can smoothly guide water into the water outlet hole 313 and then flow to the wet curtain body 200, avoiding the water being unable to flow smoothly to the water outlet hole 313 due to surface tension.
[0141] In a specific example, the humidification structure 100 of this embodiment has an annular cross-section. The first tank 310 of the water inlet is a ring-like shape with ends. The first tank 310 includes opposing first end 317 and second end 318. The water inlet point A is located at the middle position along the first tank 310 between the first end 317 and the second end 318. The number of water outlet holes 313 on each side of the water inlet point A includes two, and each water outlet hole 313 is disposed close to the inner side plate (e.g., Figure 4(As shown). Two baffles 314 are provided at the two water outlets 313 near the water inlet A, and the baffles 314 are located on the side near the water inlet A. The dimensions of the baffles 314 in the first preset direction are approximately half the outer circumference of the water outlets 313. Water guide plates 319 are provided on the side away from the water inlet A at the two water outlets 313 near the water inlet A, and water guide plates 319 are provided on the side near the water inlet A at the two water outlets 313 away from the water inlet A. Water entering the first tank 310 from the water inlet A first flows from both sides of the water inlet A along the direction away from the water inlet A to the two water outlets 313 near the water inlet A. Blocked by the baffles 314 of these two water outlets 313, the water bypasses these two water outlets 313 and flows to the other two water outlets 313 away from the water inlet A. Part of the water flows from the two outlet holes 313 away from the water inlet A to the wet curtain body under the action of the water guiding plates 319. The remaining water, due to the rebound of the inner wall 315 and the outer wall 316, flows back to the two outlet holes 313 near the water inlet A, and then, guided by the water guiding plates 319, flows from the two outlet holes 313 near the water inlet A to the wet curtain body 200. This ensures that the water entering the first tank 310 from the water inlet A flows evenly to both sides of the water inlet A, and then flows evenly to the wet curtain body 200 through the four outlet holes 313.
[0142] As a specific embodiment of this application, such as Figure 2 , Figure 3 and Figure 8 As shown, the support component 300 in this embodiment may further include a cover plate 320. The cover plate 320 may include a body 321, which covers the opening 311 of the first tank 310. A through hole 322 is provided on the body 321, and the through hole 322 corresponds to the position of the water inlet A so that an external water source supplies water to the first tank 310 through the through hole 322.
[0143] Specifically, the through hole 322 at the body 321 in this embodiment can be designed as a circular hole, a square hole, or an oblong hole. The specific shape can be designed according to the situation and is not limited here. The through hole 322 corresponds to the position of the water inlet A, so that the external water source device leads water to the cover plate 320 through the pipe, passes through the through hole 322 to the water inlet A, and adds water to the first tank 310.
[0144] Specifically, the size of the through hole 322 is generally slightly larger than the size of the pipe. When an external water source device adds water to the first tank 310 through the pipe, water inevitably splashes out from the through hole 322. In this embodiment, a water baffle 323 protrudes from the outer side of the cover plate 320, and the water baffle 323 is located outside the through hole 322. The length of the water baffle 323 is greater than or equal to the length of the through hole 322. By setting the water baffle 323 at the through hole 322, and by setting the water baffle 323 outside the through hole 322 and by setting its size larger than the size of the through hole 322, water is prevented from splashing out of the humidification structure 100 from the through hole 322.
[0145] As a specific embodiment of this application, such as Figure 9 and Figure 10 As shown, the top of the inner sidewall 315 and / or the outer sidewall 316 in this embodiment is provided with a first limiting part 3151. The bottom of the cover plate 320 is provided with a second limiting part corresponding to the first limiting part 3151. When the cover plate 320 covers the opening 311 of the first groove 310, the first limiting part 3151 and the second limiting part cooperate to fix the cover plate 320.
[0146] Specifically, in this embodiment, a first limiting part 3151 can be provided at the top of the inner sidewall 315, or at the top of the outer sidewall 316, or both the top of the inner sidewall 315 and the top of the outer sidewall 316 can be provided with the first limiting part 3151. A second limiting part 324 corresponding to the first limiting part 3151 is provided at the bottom of the cover plate 320. Thus, when the cover plate 320 is placed over the opening 311, the first limiting part 3151 and the second limiting part 324 can limit the cover plate 320, preventing misalignment between the cover plate 320 and the first groove 310 after placement.
[0147] Specifically, in one embodiment, the first limiting portion 3151 is a groove, and the second limiting portion 324 is a protrusion. In another embodiment, the first limiting portion 3151 is a protrusion, and the second limiting portion 324 is a groove. The design can be customized according to actual needs.
[0148] As a specific embodiment of this application, such as Figure 9 and Figure 10 As shown, the cover plate 320 of this embodiment may further include an inner side plate 325 and an outer side plate 326. The inner side plate 325 extends downward from the inner side of the body 321, and when the cover plate 320 covers the water inlet, the inner side plate 325 covers the outer sidewall 315 of the water inlet. The outer side plate 326 extends downward from the outer side of the body 321, and when the cover plate 320 covers the water inlet, the outer side plate 326 covers the outer sidewall 316 of the water inlet.
[0149] Specifically, in this embodiment, the first limiting part 3151 and the second limiting part 324 can be provided only between the cover plate 320 and the first groove 310 for installation and limiting. Alternatively, an inner side plate 325 can be provided on the inner side of the body 321, and / or an outer side plate 326 can be provided on the outer side of the body 321 to install and limit the cover plate 320 and the first groove 310. Furthermore, the cover plate 320 and the first groove 310 can be limited by providing an inner side plate 325 on the inner side of the body 321, an outer side plate 326 on the outer side of the body 321, a first limiting part 3151 on the inner side wall 315 and the outer side wall 316, and a second limiting part 324 at the bottom of the body 321, thereby further increasing the installation's firmness and the accuracy and stability of the limiting.
[0150] In addition, a step 330 is provided on the inner side of the water inlet, and when the cover plate 320 covers the water inlet, the bottom of the inner side plate 325 abuts against the step 330.
[0151] Specifically, by setting the step 330, the bottom of the inner side plate 325 abuts against the step 330, which can improve the stability of the installation. In addition, the setting of the step 330 can make the inner side of the inner side plate 325 and the inner side of the support component 300 basically on the same plane, without any protruding structures, thereby improving the aesthetics.
[0152] As a specific embodiment of this application, this embodiment has an outwardly protruding structure at the outer side wall 316 of the cover plate 320 to form a handle 327, which facilitates the installation or removal of the cover plate 320, and also facilitates the lifting or moving of the humidification structure 100 from the handle 327.
[0153] As a specific embodiment of this application, such as Figure 11 As shown, the support assembly 300 in this embodiment may further include a support portion 340, which extends downward from the water inlet portion and is supported on the inner side of the wet curtain body 200. The support portion 340 includes ribs 341 forming a grid.
[0154] Specifically, the structure and orientation of the rib 341 in this embodiment can be designed according to the actual situation.
[0155] Specifically, in this embodiment, the rib 341 may include a plurality of first ribs 341a extending along a first preset direction and a plurality of second ribs 341b extending along a second preset direction.
[0156] Specifically, when the humidification structure 100 is placed on a horizontal surface, the first preset direction is the horizontal direction and the second preset direction is the vertical direction.
[0157] Specifically, in this embodiment, the first rib 341a and the second rib 341b are connected to each other to form a grid, which can increase the stability and strength of the support component 300.
[0158] Preferably, some or all of the second ribs 341b in this embodiment may also include an inwardly protruding reinforcing portion 342, which can increase the strength of the second ribs 341b and thus increase the strength of the support assembly 300.
[0159] In this embodiment, multiple first ribs 341a and second ribs 341b forming a network structure can both support the wet curtain body 200 and prevent water evaporation inside the wet curtain body 200.
[0160] Specifically, such as Figure 12 and Figure 13 As shown, the humidification structure 100 of this embodiment may further include a water receiving tray 500. The water receiving tray 500 is disposed at the bottom of the wet curtain body 200 and the support assembly 300, and is used to receive liquid flowing down from the wet curtain body 200. A first limiting member 350 is provided on the side of the support assembly 300 facing the water receiving tray 500, and a second limiting member 510 matching the first limiting member 350 is provided on the side of the water receiving tray 500 facing the support assembly 300. The support assembly 300 and the water receiving tray 500 are slidably connected in a third preset direction via the first limiting member 350 and the second limiting member 510, which extend along the third preset direction. Figure 13 The direction indicated by A1 is the third preset direction.
[0161] Specifically, in this embodiment, a first limiting member 350 is provided at the support component 300, and a second limiting member 510 is provided at the water receiving tray 500. In this embodiment, both the first limiting member 350 and the second limiting member 510 extend along a third preset direction. Through the cooperation of the first limiting member 350 and the second limiting member 510, the support component 300 and the water receiving tray 500 are relatively slidably connected in the third preset direction. This not only facilitates the installation of the support component 300, but also limits the relative position of the support component 300 and the water receiving tray 500. This avoids problems such as the water inlet position of the wet curtain body 200 shifting and water overflow caused by the relative movement of the support component 300 and the water receiving tray 500 in different directions after installation, thereby ensuring the humidification effect of the air processor 10.
[0162] In one embodiment, the first limiting member 350 is a slider, and the second limiting member 510 is a groove.
[0163] In another embodiment, the first limiting member 350 is a groove and the second limiting member 510 is a slider.
[0164] Regardless of the embodiment, the slide groove engages with the slider and moves along the direction in which the slider extends (i.e., the third preset direction) to achieve installation / removal. Preferably, the slider and the slide groove are matched in structure and size, thereby enabling smoother installation / removal. It is understood that in other embodiments, the first limiting member 350 and the second limiting member 510 may also be other types of mating components capable of sliding connection, and this application does not limit the types of the first limiting member 350 and the second limiting member 510.
[0165] For ease of description, the following embodiments and figures are illustrated using the first limiting member 350 at the support component 300 as a groove and the second limiting member 510 at the water receiving tray 500 as a slider as an example, but this application is not limited thereto.
[0166] Specifically, in one embodiment, the wet curtain body 200 can be an annular cylindrical shape, and the water receiving tray 500 can be a disc shape. Therefore, the third preset direction in this embodiment can preferably be the radial direction of the water receiving tray 500, thereby ensuring that the wet curtain body 200 can be installed above the center of the water receiving tray 500. On the one hand, this can ensure the water receiving effect of the water receiving tray 500, and on the other hand, it can improve the stability of the installation and the convenience of disassembly / reassembly.
[0167] Understandably, in other embodiments, the wet curtain body 200 may also be a triangular prism, a square prism, or other columnar, semi-columnar, or flat shape, and the water receiving tray 500 may also be elliptical, triangular, or square. This application does not limit the shape of the wet curtain body 200 and the water receiving tray 500; they can be set according to actual needs. Understandably, the accompanying drawings of this application illustrate the wet curtain body 200 as a circular columnar shape and the water receiving tray 500 as a disc shape, but this application is not limited to these.
[0168] As a specific embodiment of this application, such as Figure 14 As shown, in this embodiment, a first groove 360 matching the slide groove is formed on one side of the bottom of the support component 300. The first groove 360 is located at the front end of the slide groove in a third preset direction, so that the slide groove slides into the water receiving tray 500 along the slider. Specifically, in this application, the front end of the third preset direction refers to the direction of movement of the support component 300 when it slides into the water receiving tray 500 while the water receiving tray 500 is stationary; the opposite direction is the rear end. Specifically, as follows... Figure 13 and Figure 14 As shown in the image.
[0169] Specifically, the cross-sectional dimension of the first groove 360 is larger than the cross-sectional dimension of the slide. This cross-section refers to the cross-section formed by cutting the first groove 360 and the slide in a plane perpendicular to the third preset direction.
[0170] Preferably, the cross-sectional dimension of the first groove 360 gradually decreases from the end furthest from the groove to the end closest to the groove until it becomes the same as the cross-sectional dimension of the groove. Specifically, as shown in... Figure 14 In the process of the support component 300 sliding into the water receiving tray 500 while the water receiving tray 500 remains stationary, the front end of the first groove 360 first contacts the slider, then slowly slides to the rear end of the first groove 360 to contact the slider, and finally transitions to the contact between the slide groove and the slider. The slider slowly slides into the rear end of the slide groove. Since the cross-sectional size of the front end of the first groove 360 is larger than the cross-sectional size of the slide groove and is gradually changed, the slider can easily slide into the slide groove under the guidance of the first groove 360.
[0171] As a specific embodiment of this application, such as Figure 15 and Figure 16 As shown, the number of sliders in this embodiment may include at least two, and the at least two sliders are arranged side by side along a third preset direction, with a gap between at least some of the adjacent sliders.
[0172] Specifically, in this embodiment, because the slider is located at the water receiving tray 500 and extends radially, water may overflow from all sides of the wet curtain body 200 to the water receiving tray 500. The water outlet at the water receiving tray 500 will be blocked on one side by the slider. Therefore, this embodiment designs the sliders to be arranged in a row, with at least one gap between adjacent sliders so that water in the water receiving tray 500 can flow between the sliders. This avoids the problem of water flowing down from the wet curtain body 200 being blocked by the sliders, which would cause poor water discharge from the water receiving tray 500, thereby improving the water discharge effect of the water receiving tray 500. It is understood that the number of sliders in this application can be 1, 2, 3, 4, etc., and the specific number can be designed according to the actual situation, and is not limited here.
[0173] In one example, such as Figure 15 and Figure 16 As shown, in this embodiment, the water receiving tray 500 has two sliders, with a gap between the two sliders.
[0174] Specifically, each slider in this embodiment may include a guide segment 511 and a limiting segment 512 connected to each other along a third preset direction. Along the direction approaching the limiting segment 512, the cross-sectional dimension of the guide segment 511 gradually increases in the third preset direction until it is the same as the cross-sectional dimension of the limiting segment 512. More specifically, the guide segment 511 on each slider in this embodiment is located behind the limiting segment 512. During the installation of the support assembly 300 onto the water receiving tray 500, the slide groove first contacts the rear guide segment 511, and then gradually slides to the limiting segment 512, where it is mutually limited and engaged with the slide groove by the limiting segment 512.
[0175] The main purpose of the guide section 511 is to facilitate the sliding of the chute into the engagement with the limiting section 512, and to avoid the chute and the limiting section 512 directly engaging, which would lead to positioning difficulties or excessive resistance, resulting in difficult installation and jamming.
[0176] More specifically, in this embodiment, the rear end structure of the guide segment 511 is tapered towards the bottom or middle, thereby gradually guiding the support component 300 from the guide segment 511 to the limiting segment 512 as it slides along the slider.
[0177] As a specific embodiment of this application, the length of the guide segment 511 in the third preset direction is less than the length of the limiting segment 512 in the third preset direction. By increasing the size of the limiting segment 512, the stability of the card slot can be increased.
[0178] As a specific embodiment of this application, such as Figure 14 As shown, a first baffle 370 is provided on one side of the bottom of the support component 300 in this embodiment. The first baffle 370 is located at the rear end of the slide groove (i.e., the first limiting member 350) in the third preset direction, and is used to abut against the second limiting member 510 when the support component 300 slides completely into the water receiving tray 500 along the slider (i.e., the second limiting member 510).
[0179] As another specific embodiment, such as Figure 15 As shown, a second baffle 520 protrudes from one side of the water receiving tray 500 in this embodiment. The baffle is located at the front end of the second limiting member 510 in the third preset direction and is used to abut against the supporting member 300 when the supporting member 300 slides completely into the water receiving tray 500 along the second limiting member 510.
[0180] In this embodiment, the first baffle 370 abuts against the water receiving tray 500, or the second baffle 520 abuts against the support component 300. This allows the support component 300 to be positioned relative to the water receiving tray 500 during sliding installation. The first baffle 370 or the second baffle 520 can also position the support component 300 or the water receiving tray 500 in a third preset direction, thereby preventing misalignment between them and improving installation stability.
[0181] like Figure 17 As shown, the support component 300 in this embodiment may include a base 400 supported on the bottom of the wet curtain body 200. A crossbeam 410 extending along a third preset direction is provided at the base 400, and a groove is formed at the bottom of the crossbeam 410.
[0182] Specifically, in this embodiment, the bottom of the crossbeam 410 is designed as a groove, which then cooperates with the slider.
[0183] In this embodiment, the crossbeam 410 spans across the base 400. On the one hand, the crossbeam 410 can serve as a handle, allowing for easy disassembly of the base 400 by gripping the crossbeam 410; on the other hand, it can be reused as a carrier for the slide, enabling the disassembly / assembly of the humidification structure 100.
[0184] More specifically, such as Figure 17 As shown, the base 400 of this embodiment may further include a middle plate 420, an inner plate 430, and an outer plate 440, wherein the middle plate 420 is located at the bottom of the wet curtain body 200. The inner plate 430 is connected to the middle plate 420 and is located inside the wet curtain body 200. The outer plate 440 is connected to the middle plate 420 and is located outside the wet curtain body 200; wherein the plane of the inner plate 430 and the plane of the outer plate 440 are both perpendicular to the plane of the middle plate 420, and the inner plate 430, the middle plate 420, and the outer plate 440 form a second groove 450 for supporting the wet curtain body 200.
[0185] The inner plate 430, middle plate 420, and outer plate 440 serve two purposes: firstly, they support and install the evaporative cooling pad body 200; secondly, they preserve and drain liquid overflowing from the evaporative cooling pad body 200, ensuring that the liquid is kept as close as possible to the second groove 450 to maintain the humidity of the evaporative cooling pad body 200. Excessive water accumulation is then drained to the water collection tray 500. This prevents the liquid from flowing randomly to other locations outside the humidification structure 10, thus ensuring the humidity of the evaporative cooling pad body 200 while improving the safety and stability of the internal structure of the air processor 10.
[0186] In one embodiment, the height of the inner plate 430 in the vertical direction is lower than that of the outer plate 440 in the vertical direction, so that the liquid flowing from the wet curtain body 200 into the second groove 450 overflows from the inner plate 430.
[0187] In another embodiment, at least one third groove 470 is provided above the inner plate 430, and the bottom of the third groove 470 is lower than the top height of the outer plate 440. The heights of the inner plate 430 and the outer plate 440 may or may not be the same, and are not limited herein. It is understood that the number of third grooves 470 may be one, two, or more, and their number, size, and position can be set according to actual overflow requirements, and are not limited herein.
[0188] In this embodiment, by providing a third groove 470 above the inner plate 430, the overall height of the inner plate 430 can be guaranteed as much as possible, which can better limit the wet curtain body 200. On the other hand, the water level and position of the overflow can be customized to prevent the liquid from overflowing randomly and deviating from the water receiving tray 500. For example, the liquid may flow out from the crossbeam 410, causing the liquid to flow from the gap between the crossbeam 410 and the slider to the outside of the water receiving tray 500.
[0189] In other embodiments, at least one drainage hole may be provided in the middle part of the inner plate 430, the height of which is lower than the height above the outer plate 440. The height of the inner plate 430 and the height of the outer plate 440 may or may not be the same, and this is not limited here.
[0190] In one embodiment, the evaporative cooling pad body 200 can be an annular column with an annular cross-section. A base 400 is snapped onto the underside of the evaporative cooling pad body 200. An inner plate 430 is located inside the evaporative cooling pad body 200, and an outer plate 440 is located outside the evaporative cooling pad body 200; both have circular cross-sections, and the inner plate 430 and outer plate 440 are concentric circles. A crossbeam 410 is arranged radially along the inner plate 430 and connects two opposite sides of the inner plate 430. A first groove 360 at the outer plate 440 communicates with a sliding groove below the crossbeam 410, thereby slidably connecting with a slider.
[0191] In one embodiment, such as Figure 15 and Figure 16 As shown, the water receiving tray 500 in this embodiment also includes a recessed second trough 530 and a boss 540 surrounding the second trough 530. The outer plate 440 is supported at the boss 540, and the inner plate 430 is located above the second trough 530. In this embodiment, the water receiving tray 500 is circular, the boss 540 is annular, and the slider extends radially along the boss 540. The second trough 530 is used to receive the liquid overflowing from the wet curtain body 200, while the boss 540 is used to support the humidification structure 100 and prevent the liquid in the second trough 530 from flowing out.
[0192] Specifically, in this embodiment, the outer plate 440 is supported at the boss 540, so that the boss 540 supports the support assembly 300 through the outer plate 440, and further supports the wet curtain body 200. The inner plate 430 is located above the second tank 530, so that the liquid overflowing from the inner plate 430 through the second groove 450 directly enters the second tank 530.
[0193] Specifically, in this embodiment, the height of the slider is higher than the height of the boss 540 to ensure the fit between the slide groove and the slider.
[0194] More specifically, in this embodiment, the rear end of the guide segment 511 of the slider near the rear is flush with the boss 540 (e.g., Figure 15 and Figure 16 As shown in the diagram, the slider on the left is the rear slider, and the left end of the slider on the left is the rear end of the slider. This ensures that the groove of the base 400 can smoothly slide in conjunction with the slider.
[0195] As a specific embodiment of this application, such as Figure 18 As shown, in this embodiment, the outer plate 440 extends vertically from above the middle plate 420 to below the middle plate 420 and is supported at the boss 540. The inner plate 430 extends vertically from above the middle plate 420 to below the middle plate 420.
[0196] Specifically, the inner plate 430 extends from above the middle plate 420 to below the middle plate 420 to ensure that the liquid in the second groove 450 slides directly from the inner plate 430 into the second tank 530 of the water receiving tray 500.
[0197] As a specific embodiment of this application, such as Figure 17 As shown, at least one first magnetic element 460 is provided at the base 400 in this embodiment. (As indicated...) Figure 19 As shown, at least one second magnetic element 550 is provided at the water receiving tray 500. When the support assembly 300 is slidably installed at the water receiving tray 500, the positions of the first magnetic element 460 and the second magnetic element 550 correspond and they attract each other.
[0198] The mutual attraction of the first magnetic component 460 and the second magnetic component 550 ensures the stability of the support component 300 and the water receiving tray 500 in the third preset direction after installation, avoiding misalignment caused by loosening of the support component 300 and the water receiving tray 500 in the third preset direction, which could lead to liquid overflow. At the same time, it can also guide the installation direction and improve installation efficiency.
[0199] In one embodiment, the first magnetic attractor 460 is disposed at the first limiting member 350, and the second magnetic attractor 550 is disposed at the second limiting member 510.
[0200] In another embodiment, the first magnetic member 460 is disposed on the side of the intermediate plate 420 facing the boss 540, and the second magnetic member 550 is disposed at the boss 540.
[0201] Specifically, the number of first magnetic components 460 and second magnetic components 550 is the same, and they are arranged correspondingly. The number of either the first magnetic component 460 or the second magnetic component 550 can be one or more. The number and position of the first magnetic component 460 and the second magnetic component 550 can be set according to actual needs and are not limited here.
[0202] Specifically, such as Figure 15 and Figure 19As shown, in this embodiment, the bottom of the second tank 530 of the water receiving tray 500 is provided with a water outlet 560. Preferably, the water outlet 560 is located at the bottom of the second tank 530. More preferably, in this embodiment, the height of the water outlet 560 is lower than the height of other positions at the bottom of the second tank 530. This ensures that the liquid entering the second tank 530 flows to the water outlet 560 immediately and is discharged from the water outlet 560.
[0203] As a specific embodiment of this application, such as Figure 12 As shown, in this embodiment, the handle 327 is located on the side of the support assembly 300 at the rear end in the third preset direction. The handle 327 being located at the rear end of the support assembly 300 in the third preset direction allows for easy sliding installation of the support assembly 300 and the water tray 500 directly via the handle 327. It also facilitates the removal of the support assembly 300 from the water tray 500 from the handle 327.
[0204] like Figure 2 As shown, the humidification structure 100 provided in this embodiment may further include a base 400, wherein the support assembly 300 is detachably supported on the inner side of the wet curtain body 200. Furthermore, as... Figure 20 As shown, the base 400 is supported on the bottom of the wet curtain body 200. At least one first snap-fit member 390 is provided at the support component 300, and a second snap-fit member 480 corresponding to the first snap-fit member 390 is provided at the base 400. The base 400 and the support component 300 are detachably connected to each other through the first snap-fit member 390 and the second snap-fit member 480.
[0205] Specifically, in this embodiment, a first snap-fit member 390 is provided at the support component 300, and a second snap-fit member 480 is provided at the support component 300. The base 400 and the support component 300 are detachably connected to each other through the first snap-fit member 390 and the second snap-fit member 480, so as to facilitate the removal of the base 400 from the support component 300. This facilitates the installation and removal of the wet curtain body 200 and the support component 300, and makes it easier to clean and replace the wet curtain body 200.
[0206] As a specific embodiment of this application, the first card connector 390 may include a card slot, and the second card connector 480 may include a card block.
[0207] Of course, as another specific embodiment, the first card connector 390 of this embodiment includes a card block, and the second card connector 480 includes a card slot.
[0208] Regardless of the embodiment, the base 400 and the support component 300 are detachably connected via a locking block and a locking slot. The locking block and locking slot facilitate installation and removal, making it easy to connect the base 400 and the support component 300, thus facilitating the disassembly, cleaning, and replacement of the evaporative cooling pad body 200.
[0209] Understandably, in other embodiments, in addition to the engagement of the card block and the card slot, the first card connector 390 and the second card connector 480 may also be detachably connected by means of elastic buckles, clamps or magnetic attraction. The type and engagement method of the first card connector 390 and the second card connector 480 are not limited here.
[0210] The following explanation uses the first card connector 390 as the card block and the second card connector 480 as the card slot. In other words, the support component 300 has a card block and the base 400 has a card slot as an example.
[0211] In this embodiment, the humidification structure 100 is annular cylindrical. Specifically, the evaporative cooling pad body 200 and the support assembly 300 are annular cylindrical, with the support assembly 300 supported inside the evaporative cooling pad body 200. A base 400 is located at the bottom of the evaporative cooling pad body 200 and is positioned outside the support assembly 300. Each locking block on the support assembly 300 extends outward to be detachably connected to a corresponding locking slot.
[0212] Understandably, in other embodiments, in addition to the annular cylindrical shape, the humidification structure 100 may also be a triangular prism, a quadrangular prism, or other columnar, semi-columnar, or planar shape, and the shape of the humidification structure 100 is not limited here.
[0213] Specifically, in this embodiment, the card block extends outward, that is, the card block protrudes outward from the support component 300 in a direction away from the center of the support component 300 (e.g., Figure 23 As shown in the figure, this structure makes it easier for the card block to extend to the card slot on the base 400 and engage with the card slot, thereby facilitating the engagement of the support component 300 with the base 400.
[0214] In one example, a slot may be provided on the inner panel 430, and a locking block on the support assembly 300 may be detachably connected to the inner panel 430 via the slot. Specifically, the inner panel 430 is located on the side of the support assembly 300 facing the wet curtain body 200 (hereinafter referred to as the outer side of the support assembly 300), and the side of the inner panel 430 away from the outer panel 440 (hereinafter referred to as the inner side of the inner panel 430) contacts the outer side of the support assembly 300. A slot is provided on the side of the inner panel 430 away from the outer panel 440, and a locking block is provided on the outer side of the support assembly 300.
[0215] Understandably, in another embodiment, the support component 300 may also be disposed on the side of the inner plate 430 facing the outer plate 440 (hereinafter referred to as the outer side of the inner plate 430). In this embodiment, the locking block may be disposed on the inner side of the support component 300, and the locking slot may be disposed on the outer side of the inner plate 430.
[0216] As a specific embodiment of this application, such as Figure 22 As shown, the slot (i.e., the second snap-fit member 480) in this embodiment may include a fourth groove 481 located on the inner sidewall of the inner plate 430. When the snap-fit block (i.e., the first snap-fit member 390) slides from below the fourth groove 481 to above the fourth groove 481, it snaps into the inner plate 430, and when the snap-fit block slides from above the fourth groove 481 to below the fourth groove 481, it separates from the inner plate 430.
[0217] Specifically, in this embodiment, "above" refers to the position above the fourth groove 481 when the humidification structure 100 is in normal use and is placed, and "below" refers to the position below the fourth groove 481.
[0218] Specifically, in this embodiment, the slot at the support component 300 may include a fourth groove 481, and the locking block can be detachably connected to the support component 300 via the fourth groove 481. The design of the fourth groove 481 serves two purposes: firstly, it positions the locking block; secondly, it facilitates the engagement, disassembly, and connection of the locking block and the groove while ensuring a small gap between the support component 300 and the base 400.
[0219] As a specific embodiment of this application, such as Figure 23 As shown, the card block (i.e. the first card connector 390) in this embodiment may include an outer side 391, an upper side 392 and a lower side 393. The outer side 391 and the upper side 392 are chamfered to form a first inclined surface 394, and the outer side 391 and the lower side 393 are chamfered to form a second inclined surface 395.
[0220] In this embodiment, the outer side 391 and the upper side 392, and the outer side 391 and the lower side 393 of the card block are all chamfered to form beveled surfaces, which makes it easier for the card block to slide out from the upper or lower side of the card slot, thereby facilitating installation and disassembly.
[0221] As a specific embodiment of this application, such as Figure 22 As shown, in this embodiment, the second bottom 4811 and the upper side 4812 of the card slot (i.e., the second card connector 480) are chamfered to form a third inclined surface 482; the second bottom 4811 and the lower side 4813 of the card slot are perpendicular to each other.
[0222] In this embodiment, the third inclined surface 482 formed between the second bottom 4811 and the upper side 4812 facilitates the locking block to be inserted into the slot along the third inclined surface 482 and thus engage with the slot. The vertical arrangement between the second bottom 4811 and the lower side 4813 makes it difficult for the locking block to slide upward from the lower side 4813 of the slot, thereby improving the stability of the installation between the support component 300 and the base 400.
[0223] As another specific embodiment of this application, such as Figure 24 As shown, in this embodiment, the second bottom 4811 and the upper side 4812 of the card slot are chamfered to form a third inclined surface 482; the second bottom 4811 and the lower side 4813 of the card slot are chamfered to form a fourth inclined surface 483.
[0224] Specifically, in this embodiment, the second bottom 4811 and the upper side 4812 of the card slot, as well as the second bottom 4811 and the lower side 4813 of the card slot, are chamfered to form bevels. Combined with the first bevel 394 between the outer side 391 and the upper side 392 of the card block and the second bevel 395 between the outer side 391 and the lower side 393, the installation and removal of the card block and the card slot can be made more convenient.
[0225] Preferably, the first inclined surface 394 is parallel to the fourth inclined surface 483, and the second inclined surface 395 is parallel to the third inclined surface 482. This design not only ensures convenient installation and disassembly, but also ensures a high degree of fit and small gap between the base 400 and the support component 300 when they are installed together.
[0226] More preferably, such as Figure 22 and Figure 24 As shown, in this embodiment, the two sides of the card slot are inclined from the inside out to form a fifth inclined surface 484. Figure 23 As shown, a sixth inclined plane 396 is formed on both sides of the locking block, parallel to the fifth inclined plane 484. Similarly, the fifth inclined plane 484 and the sixth inclined plane 396 are also parallel to each other. Through the cooperation of the fifth inclined plane 484 and the sixth inclined plane 396, the locking block and the locking slot can cooperate more smoothly.
[0227] As a specific embodiment of this application, the number of first card connectors 390 and second card connectors 480 is the same, and there are at least two of each. The plurality of first card connectors 390 may be spaced apart on the support assembly 300, and the plurality of second card connectors 480 may be spaced apart on the base 400.
[0228] Specifically, in the embodiment where the first latching member 390 is a latching block and the second latching member 480 is a latching slot, the number of latching blocks and latching slots in this embodiment is the same, and there are at least two of each. Multiple latching slots are spaced apart on the inner plate 430 of the base 400, and corresponding to the positions of each latching slot, multiple latching blocks are also spaced apart on the outer side of the support assembly 300.
[0229] In one embodiment, multiple first snap-fit members 390 can be evenly distributed on the support assembly 300, and multiple second snap-fit members 480 can be evenly distributed on the base 400. Specifically, in a specific embodiment of the snap-fit blocks and slots, multiple slots can be evenly distributed on the inner plate 430 of the base 400, and corresponding to the positions of each slot, multiple snap-fit blocks are also evenly distributed on the outer side of the support assembly 300. For example, in one example, the humidification structure 100 is an annular cylindrical shape, and four evenly distributed slots can be provided on the inner plate 430 of the base 400, and four evenly distributed slots can be provided on the outer side of the support assembly 300. In this way, the disassembly / assembly of the base 400 and the support assembly 300 can be achieved more stably.
[0230] This embodiment improves the stability between the base 400 and the support component 300 after installation by setting multiple sets of evenly distributed locking blocks and slots, thus avoiding structural instability caused by uneven locking between the base 400 and the support component 300.
[0231] Understandably, in other embodiments, only one card block and one card slot may be provided to achieve a detachable connection between the base 400 and the support component 300. This application does not limit the number and distribution of card blocks and card slots, which can be set according to actual needs.
[0232] As a specific embodiment of this application, a crossbeam 410 may also be provided at the base 400. The two ends of the crossbeam 410 are respectively connected to the opposite sides of the base 400. When the base 400 is installed at the support assembly 300, the crossbeam 410 is located below the support assembly 300.
[0233] Specifically, in this embodiment, the crossbeam 410 is disposed on opposite sides of the base 400, and the crossbeam 410 is located below the support assembly 300. Thus, the crossbeam 410 can serve as a handle disposed on the base 400. By pulling the base 400 through the handle, the base 400 can be easily disassembled / installed with the support assembly 300.
[0234] In one example, when the evaporative cooling pad body 200 is a cylindrical ring, its base 400 is also annular, and the crossbeam 410 extends radially along the base 400. In another example, when the evaporative cooling pad body 200 is a triangular prism, the base 400 is triangular, and the crossbeam 410 can extend along the perpendicular bisector of the base 400. In yet another example, when the evaporative cooling pad body 200 is a quadrangular prism, the base 400 is square, and the crossbeam 410 can extend along the diagonal of the base 400 or along the perpendicular bisector. Of course, the evaporative cooling pad body 200 is not limited to the above embodiments. Different structures of the evaporative cooling pad body 200 correspond to different structures of the base 400, causing the position of the crossbeam 410 to change accordingly. The specific design can be tailored to actual needs.
[0235] In one embodiment, the humidifying structure 100 can be placed on the water receiving tray (not shown) in the air processor 10. The bottom of the crossbeam 410 is hollow and can be reused as a limiting structure for the humidifying structure 100. It cooperates with the limiting protrusion provided on the side of the water receiving tray near the humidifying structure 100 to limit the humidifying structure 100 on the water receiving tray, thereby further improving the installation stability of the humidifying structure 100 in the air processor 10.
[0236] Specifically, such as Figure 20 As shown, the support component 300 in this embodiment may include multiple first ribs 341a forming a network structure and multiple second ribs 341b longitudinally connecting the multiple first ribs 341a. The locking block is disposed at the bottommost first rib 341a. Distributing the locking block at the bottommost first rib 341a allows it to cooperate with the base 400 without wasting space.
[0237] As a specific embodiment of this application, this embodiment also provides an air processor 10, which may include the humidification structure 100 in the above embodiment. The humidification structure 100 of this embodiment can be disposed within the air processor 10. When the air processor 10 processes the air, the water within the humidification structure 100 evaporates and flows out with the airflow generated by the air processor 10, thereby increasing the humidity of the airflow, achieving a humidification effect, and improving the user experience.
[0238] Specifically, the humidification structure 100 has a detachable base 400, which facilitates the removal of the evaporative cooling pad body 200, making it easier to clean or replace the evaporative cooling pad body 200. Thus, the air processor 10 with the humidification structure 100 provides users with space to clean / replace the evaporative cooling pad body 200, improving the user experience. Furthermore, it can output a cleaner, more humid airflow.
[0239] As a specific embodiment of this application, this embodiment also provides an air humidifier, which may include the humidification structure 100 in the above embodiment.
[0240] Specifically, the humidification structure 100 has a detachable base 400, which facilitates the disassembly of the evaporative cooling pad body 200, making it easier to clean or replace the evaporative cooling pad body 200. Thus, the air humidifier with the humidification structure 100 provides users with space to clean / replace the evaporative cooling pad body, improving the user experience. Furthermore, it can output a cleaner, more humid airflow.
[0241] Therefore, those skilled in the art should recognize that although many exemplary embodiments of this application have been shown and described in detail herein, many other variations or modifications conforming to the principles of this application can be directly determined or derived from the disclosure of this application without departing from the spirit and scope of this application. Thus, the scope of this application should be understood and construed as covering all such other variations or modifications.
Claims
1. A humidification structure, characterized in that, include: wet curtain body; A support assembly for supporting the wet curtain body; the support assembly includes a water inlet located on the upper part of the wet curtain body, for guiding the water flow that converges through the water inlet point to the wet curtain body. The water inlet includes an upward-opening tank, and the bottom of the tank is provided with at least two water outlets arranged at intervals along the water flow direction. The at least two water outlets are used to guide the water in the tank to the wet curtain body. At least one of the water outlet holes located near the water inlet has a baffle formed on the outer periphery of the portion facing the water inlet. The baffle is used to prevent water from flowing into the corresponding water outlet hole along the water flow direction away from the water inlet.
2. The humidification structure according to claim 1, characterized in that, The water outlet is divided into at least one first water outlet located near the water inlet and at least one second water outlet located away from the water inlet. A baffle is formed on the outer periphery of at least one first water outlet facing the water inlet.
3. The humidification structure according to claim 2, characterized in that, Starting from the water outlet closest to the water inlet, a predetermined number of the first water outlets are formed with the baffle along a direction away from the water inlet.
4. The humidification structure according to claim 1, characterized in that, At least two of the water outlet holes are evenly distributed at the bottom of the tank along the water flow direction away from the water inlet point.
5. The humidification structure according to claim 1, characterized in that, The tank includes an inner wall and an outer wall; The distance between each of the water outlets and the inner sidewall is the same as the distance between each outlet and the outer sidewall.
6. The humidification structure according to claim 1, characterized in that, The tank includes an inner wall and an outer wall; The water outlet is located near the inner sidewall.
7. The humidification structure according to claim 6, characterized in that, The baffle extends from the outer periphery of the water outlet near the water inlet to the inner sidewall.
8. The humidification structure according to claim 1, characterized in that, At least two of the water outlet holes are distributed on at least one side of the water inlet point.
9. The humidification structure according to claim 8, characterized in that, The tank includes a first end and a second end, and the liquid in the tank flows between the first end and the second end; The water inlet is located at the first end or the second end, and at least two water outlets are located on one side of the water inlet.
10. The humidification structure according to claim 1, characterized in that, At least two of the water outlet holes are symmetrically arranged along both sides of the water inlet point.
11. The humidification structure according to claim 10, characterized in that, The tank includes a first end and a second end, and the liquid in the tank flows between the first end and the second end; The water inlet is located between the first end and the second end, and at least two water outlets are provided on both sides of the water inlet.
12. The humidification structure according to claim 10, characterized in that, The groove is annular.
13. The humidification structure according to claim 1, characterized in that, Along the water flow direction away from the water inlet, the size of the baffle on each of the water outlets gradually decreases in a first preset direction; wherein, the first preset direction is a direction parallel to the plane where the bottom of the tank is located.
14. The humidification structure according to claim 1, characterized in that, The ratio of the dimension of the baffle in the first preset direction to the outer perimeter of the water outlet is 0.3 to 0.8; wherein, the first preset direction is the direction parallel to the plane where the bottom of the tank is located.
15. The humidification structure according to claim 5 or 6, characterized in that, Along the water flow direction away from the water inlet, the size of the baffle on each of the water outlets gradually decreases in a second preset direction, wherein the second preset direction is a direction perpendicular to the plane where the bottom of the tank is located.
16. The humidification structure according to claim 15, characterized in that, The ratio of the dimension of the baffle in the second preset direction to the dimension of the inner sidewall or the outer sidewall in the second preset direction is 0.3-0.8, wherein the second preset direction is the direction perpendicular to the plane where the bottom of the groove is located.
17. The humidification structure according to claim 1, characterized in that, At least one of the water outlet holes is provided with a water guide plate.
18. The humidification structure according to claim 17, characterized in that, At least one water outlet with the baffle is provided with a water guide plate on the side away from the water inlet point; At least one outlet without the baffle is provided with a water guide plate on the side near the water inlet or the side away from the water inlet.
19. The humidification structure according to claim 17, characterized in that, The water guide plate is disposed inside the water outlet and extends in a direction toward the center of the water outlet.
20. The humidification structure according to claim 5 or 6, characterized in that, The support assembly also includes a cover plate, the cover plate having a body that covers the opening of the groove. The main body is provided with a through hole, and the position of the through hole corresponds to the position of the water inlet point so that an external water source supplies water to the tank through the through hole; A water baffle is protruding from the outer side of the cover plate, and the water baffle is located outside the through hole; wherein the length of the water baffle is greater than or equal to the length of the through hole.
21. The humidification structure according to claim 20, characterized in that, A first limiting portion is provided at the top of the inner sidewall and / or the outer sidewall; The bottom of the cover plate is provided with a second limiting part corresponding to the first limiting part; when the cover plate is placed over the opening of the groove, the first limiting part and the second limiting part cooperate to fix the cover plate.
22. The humidification structure according to claim 21, characterized in that, The first limiting part is a groove, and the second limiting part is a protrusion; or The first limiting part is a protrusion, and the second limiting part is a groove.
23. The humidification structure according to claim 20, characterized in that, The cover plate also includes: An inner side plate extending downward from the inside of the body covers the outer sidewall of the water inlet when the cover plate covers the water inlet; and An outer side plate extending downward from the outer side of the body covers the outer side wall of the water inlet when the cover plate covers the water inlet. The support assembly has a step on its inner side, and when the cover plate covers the water inlet, the bottom of the inner plate abuts against the step.
24. The humidification structure according to claim 1, characterized in that, The support assembly further includes a support portion that extends downward from the water inlet portion and is supported on the inner side of the wet curtain body; The support portion includes ribs forming a grid; the ribs include multiple first ribs and multiple second ribs.
25. An air processor, characterized in that, The humidification structure includes any one of claims 1-24.
26. An air humidifier, characterized in that, The humidification structure includes any one of claims 1-24.