Disc body assembly and integral air conditioner

By incorporating a water collection area, water trough, and filter into the air conditioner, combined with a pump and water dispensing device, the problems of condensate buildup and corrosion are solved, thus improving the service life and compactness of the air conditioner.

CN224050584UActive Publication Date: 2026-03-27GD MIDEA AIR CONDITIONING EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In a modular air conditioner, condensate tends to accumulate at the bottom of the evaporator, causing it to become submerged or overflow. Furthermore, impurities in the condensate accelerate condenser corrosion, reducing the lifespan of the air conditioner.

Method used

A water receiving area and a water spraying tank are set in the plate assembly. The filter element filters the condensate. The pump body guides the condensate from the water receiving area to the water spraying tank, and the water spraying device sprays the condensate to the first heat exchanger to reduce the impurity content in the condensate and prevent corrosion.

Benefits of technology

It effectively reduces the corrosion of the first heat exchanger by condensate, improves the service life and compactness of the air conditioner, reduces the possibility of condensate overflow and leakage, and enhances the reliability and efficiency of the air conditioner.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a disc body assembly and an integral type air conditioner, and relates to the technical field of air conditioning equipment, the disc body assembly is applied to the integral type air conditioner, the integral type air conditioner comprises a first heat exchanger and a second heat exchanger which are distributed in parallel, and the disc body assembly comprises a disc body and a filtering piece; the disc body is provided with a water receiving area and a water fetching groove which are communicated, the water receiving area is located below the second heat exchanger, and the water fetching groove is located below the first heat exchanger; the filtering piece is arranged on the disc body, and a condensate water flow path from the water receiving area to the water fetching groove through the filtering piece is formed in the disc body assembly. According to the technical scheme, corrosion of condensate water to the first heat exchanger is reduced, the compactness of the disc body is improved, and the service life of the integral air conditioner is guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

[0001] The present application claims priority from the Chinese patent application No. 202410490721.9 filed on April 23, 2024 and entitled "A kitchen air conditioner", the contents of which should be understood as incorporated by reference into the present application. TECHNICAL FIELD

[0002] The utility model relates to air conditioning equipment technical field, especially in a kind of disc body subassembly and integral type air conditioner. BACKGROUND

[0003] For integral type air conditioner, condensate water generated on evaporator side will accumulate in the lower part of evaporator, prone to evaporator bubble water or air conditioner overflow and other problems, in the related art, the condensate water generated by evaporator is drained to condenser, however, the current condensate water can accelerate the aging of condenser, reduces the service life of integral type air conditioner. SUMMARY

[0004] The main purpose of the utility model is to provide a disc body subassembly and integral type air conditioner, to reduce the corrosion of condensate water to first heat exchanger, and improve the compactness of disc body, guarantee the service life of integral type air conditioner.

[0005] To achieve the above-mentioned purpose, the disc body subassembly of the utility model is applied to integral type air conditioner, the integral type air conditioner includes parallelly distributed first heat exchanger and second heat exchanger, and the disc body subassembly includes:

[0006] Disc body, the disc body is provided with water receiving area and water hitting groove in communication, the water receiving area is located below the second heat exchanger, and the water hitting groove is located below the first heat exchanger; and

[0007] Filtering piece, the filtering piece is arranged in the disc body, and the disc body subassembly forms condensate water flow path from the water receiving area to the water hitting groove through the filtering piece.

[0008] In an embodiment, the first heat exchanger and the second heat exchanger form an avoidance space, the disc body is provided with an avoidance through slot corresponding to the lower part of the avoidance space, and the filtering piece is arranged in the avoidance through slot.

[0009] In an embodiment, the filtering piece is arranged in a strip shape, the avoidance through slot is configured as a straight slot, the filtering piece extends on the avoidance through slot, one end of the filtering piece is communicated with the water receiving area, and the other end is communicated with the water hitting groove.

[0010] In an embodiment, the filtering piece is provided with oil absorption felt, and the oil absorption felt forms a water filtering channel extending in an S shape.

[0011] In an embodiment, the disc assembly is further provided with a pump body, which is installed on the water receiving area and is communicated with the filter.

[0012] In an embodiment, the water receiving area is provided with a pump body installation position for installing the pump body, the bottom wall of the water receiving area is inclined downward in the direction close to the pump body installation position.

[0013] In an embodiment, the water receiving area is provided with a drainage section and a water receiving section, the water receiving section is adapted to the bottom of the second heat exchanger in a U shape, one end of the drainage section is communicated with the water receiving section, and the other end is communicated with the pump body installation position.

[0014] In an embodiment, the water receiving section is provided with a middle part being higher and two ends being lower, the bottom wall of the drainage section is lower than the lowest part of the bottom wall of the water receiving section and is inclined downward in the direction close to the pump body installation position.

[0015] In an embodiment, one end of the filter is communicated with the pump body through a pipe, and the other end is communicated with the water hitting groove.

[0016] In an embodiment, the integrated air conditioner further comprises a water level detection member, which is arranged on the water receiving area and is used for detecting the water level of the water receiving area.

[0017] In an embodiment, the water receiving area is provided with a detection installation position, the integrated air conditioner is further provided with a pump body, the pump body is installed on the water receiving area and is communicated with the filter, and the detection installation position is higher than the position where the water receiving area is communicated with the pump body.

[0018] The utility model further provides an integrated air conditioner, the integrated air conditioner includes parallel distribution's first heat exchanger and second heat exchanger and as aforementioned disc assembly, the second heat exchanger is used to heat exchange with indoor environment, and the first heat exchanger is used to heat exchange with outdoor environment.

[0019] In an embodiment, the first heat exchanger is configured as a condenser, and the second heat exchanger is configured as an evaporator.

[0020] In an embodiment, the integrated air conditioner further comprises a water hitting device, which is arranged on the disc and is between the water hitting groove and the first heat exchanger.

[0021] In an embodiment, the disc is configured as a bottom disc of the integrated air conditioner, or the disc is configured as a water receiving disc of the integrated air conditioner.

[0022] The technical scheme of the utility model discloses a water receiving area is correspondingly arranged below the second heat exchanger, and the water hitting groove is correspondingly arranged below the first heat exchanger, the water receiving area can receive the condensed water generated by the second heat exchanger, when the condensed water flows from the water receiving area to the condensed water flow path in the water hitting groove, the disc body is further provided with a filter piece, and the filter piece filters the condensed water from the water receiving area, so that the impurity content of the condensed water in the water hitting groove is reduced, thereby reducing the impurity content adhered to the first heat exchanger during the process that the water hitting groove hits the first heat exchanger, and the corrosion of the condensed water to the first heat exchanger is reduced, and the service life of the integrated air conditioner is guaranteed. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to the structures shown in these drawings without creative labor for those skilled in the art.

[0024] Figure 1 It is a partial structure schematic diagram of an embodiment of the disc body assembly provided by the utility model installed in the integrated air conditioner.

[0025] Figure 2 It is Figure 1 It is a partial enlarged view of A in the figure.

[0026] Figure 3 It is Figure 1 It is a water flow direction schematic diagram of the disc body assembly.

[0027] EXPLANATION OF DRAWINGS:

[0028] 100, disc body, 110, water receiving area, 111, pump body mounting position, 112, drainage section, 113, water receiving section, 114, detection mounting position, 120, water hitting groove, 130, avoiding through groove,

[0029] 200, filter piece, 300, pump body, 400, pipe fitting, 500, first heat exchanger, 600, second heat exchanger, 700, water level detection piece, 800, water hitting device, 810, water hitting wheel.

[0030] The realization, functional characteristics and advantages of the utility model will be further explained by combining with the embodiments and referring to the drawings. DETAILED DESCRIPTION

[0031] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0032] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain posture, and if the certain posture changes, the directional indications will also change accordingly.

[0033] In addition, if the embodiments of the present application involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist and is not within the scope of protection required by the present application.

[0034] In the related art, for the whole type air conditioner, the condensate water generated by the evaporator is drained to the lower part of the condenser, and then the part of the condensate water is splashed to the condenser, on the one hand, the heat dissipation efficiency of the condenser can be promoted, and on the other hand, the condensate water can be consumed, and the possibility of condensate water seepage of the whole type air conditioner is reduced. However, since the environment of the evaporator and the air conditioner is connected, the air impurities in the current environment can enter the condensate water under the cooling action of the evaporator, such as dust, grease, etc., and the impurities in the part of the condensate water can also be attached to the surface of the condenser during the process of cooling the condenser, especially when the current condenser is in a high temperature state, the part of the impurities can easily accelerate the corrosion of the copper sheet and the fin of the condenser, thereby reducing the service life of the air conditioner.

[0035] The utility model provides a disc body assembly.

[0036] Please refer to Figures 1 to 3In an embodiment of the present application, the disc assembly is applied to a whole air conditioner, the whole air conditioner comprises a first heat exchanger 500 and a second heat exchanger 600 which are distributed in parallel, and the disc assembly comprises:

[0037] The disc body 100 is provided with a water receiving area 110 and a water hitting groove 120 which are communicated, the water receiving area 110 is located below the second heat exchanger 600, and the water hitting groove 120 is located below the first heat exchanger 500; and

[0038] The filter 200 is arranged on the disc body 100, and the disc assembly is formed with a condensate water flow path from the water receiving area 110 to the water hitting groove 120 through the filter 200.

[0039] The technical scheme of the present application sets the water receiving area 110 and the water hitting groove 120 on the disc body 100, the water receiving area 110 is correspondingly arranged below the second heat exchanger 600, the water hitting groove 120 is correspondingly arranged below the first heat exchanger 500, the water receiving area 110 can receive the condensate water generated by the second heat exchanger 600, the disc body 100 is further provided with the filter 200, and the filter 200 can filter the condensate water from the water receiving area 110, so as to reduce the impurity content of the condensate water in the water hitting groove 120, thereby reducing the impurity content attached to the first heat exchanger 500 in the process that the water hitting groove 120 hits water to the first heat exchanger 500, and the corrosion of the condensate water to the first heat exchanger 500 is reduced, and the service life of the whole air conditioner is guaranteed.

[0040] It should be noted that for the way of the condensed water of the water receiving area 110 flowing to the water tank 120, the condensed water of the water receiving area 110 can be accumulated to the water tank 120 by height difference using gravity, or the condensed water of the water receiving area 110 can be pumped to the water tank 120 by a water pump. Among them, the filter 200 is on the condensed water flow path of the water receiving area 110 flowing to the water tank 120, which can be arranged in the water receiving area 110 or adjacent to the water tank 120. Correspondingly, the condensed water flow path from the water receiving area 110 to the water tank 120 through the filter 200 can be one or multiple parallel ones, and the filter 200 is arranged corresponding to each condensed water flow path. It can be understood that the filter 200 has different filtering capabilities according to different environments of the integrated air conditioner, such as in a kitchen or other space with more oil in the air, the filter 200 focuses on filtering oil, such as in a space with more dust, the filter 200 focuses on filtering dust. In addition, in an embodiment, when the integrated air conditioner is cooling, the first heat exchanger 200 is configured as a condenser, and the second heat exchanger 300 is configured as an evaporator. In another embodiment, when the integrated air conditioner is heating, the first heat exchanger 200 is configured as an evaporator, and the second heat exchanger 300 is configured as a condenser. In the present technical solution, the cooling of the integrated air conditioner is described.

[0041] For the filtering capability of the filter 200, in an embodiment, please refer to Figure 1 and Figure 3 An oil absorption felt is arranged in the filter 200, and the oil absorption felt forms a water filtering channel extending in an S shape. It can be understood that in the present embodiment, the integrated air conditioner is installed in a kitchen or other environment with more oil in the air, so that the oil absorption felt can better absorb the oil in the condensed water to reduce the oil contained in the condensed water hitting the first heat exchanger 500, that is, to reduce the oil attached to the first heat exchanger 500 and the probability of corrosion of the first heat exchanger 500 by oil. In addition, the water filtering channel extending in an S shape increases the contact area and contact time of the oil and the oil absorption felt, thereby improving the adsorption efficiency of the oil. Among them, the water filtering channel can be formed on the oil absorption felt, or the filter 200 can be provided with a water filtering channel, and then the oil absorption felt is filled in the water filtering channel. Of course, in other embodiments, different adsorption capability filter 200 can be arranged according to different environments of the integrated air conditioner, such as dust filtering cotton or activated carbon.

[0042] For the flow of the condensed water from the water receiving area 110 to the water tank 120, in an embodiment, please refer to Figures 1 to 3The disc assembly is further provided with a pump body 300, which is installed on the water receiving area 110 and is communicated with the filter 200. The pump body 300 can flow the condensed water in the water receiving area 110 towards the filter 200, and then to the water hitting groove 120, so as to ensure the flow direction of the condensed water towards the water hitting groove 120, avoid the backflow of the condensed water from the water hitting groove 120 to the water receiving area 110, guarantee the consumption of the condensed water, and reduce the probability of water leakage of the overall air conditioner. At the same time, the pump body 300 is used to pump the condensed water to the water hitting groove 120, which improves the efficiency of the condensed water in the water receiving area 110 flowing to the water hitting groove 120. The communication between the pump body 300 and the filter 200 and the communication between the filter 200 and the water hitting groove 120 can be achieved by the pipe 400. Of course, in other embodiments, the condensed water in the water receiving area 110 can also be gravity-induced to the water guide groove through the height difference.

[0043] Further, in the embodiment, please refer to Figure 1 and Figure 2 The water receiving area 110 is provided with a pump body installation position 111 for installing the pump body 300, the pump body installation position 111 is at the lowest part of the water receiving area 110, and the bottom wall of the water receiving area 110 is inclined downward in the direction close to the pump body installation position 111. The inclination of the bottom wall of the water receiving area 110 towards the pump body installation position 111 can ensure that the condensed water naturally flows to the pump body installation position 111 under the action of gravity. This avoids the accumulation of condensed water in the corners or hard-to-reach areas of the water receiving area 110, reduces the possibility of water accumulation in the disc 100, improves the efficiency of the condensed water in the water receiving area 110 flowing to the water hitting groove 120, and is beneficial to quickly reduce the content of the condensed water in the water hitting groove 120 and reduce the possibility of overflow of the condensed water from the water receiving area 110. Of course, in other embodiments, the pump body 300 can be arranged at other positions of the disc 100, and the pump body 300 is communicated with the lowest part of the bottom wall of the water receiving area 110 through the pipe 400; or the water receiving area 110 is centered on the pump body installation position 111 and presents a ring-shaped ladder with gradually decreasing height towards the pump body installation position 111, which realizes the automatic accumulation of the condensed water towards the pump body installation position 111 and slows down the flow rate of the condensed water in the water receiving area 110, thereby reducing the possibility of overflow of the condensed water from the water receiving area 110.

[0044] Further, in the embodiment, please refer to Figures 1 to 3The water receiving area 110 is provided with a drainage section 112 and a water receiving section 113. The water receiving section 113 is in the shape of a U and is adapted to the bottom of the second heat exchanger 600. One end of the drainage section 112 is communicated with the water receiving section 113, and the other end is communicated with the pump body mounting position 111. Without loss of generality, the second heat exchanger 600 is provided in the shape of a U, which increases the efficiency of the second heat exchanger 600 in absorbing heat and refrigerating. Correspondingly, it also helps to uniformly distribute the condensed water in the water receiving section 113, increases the efficiency of the condensed water falling from the second heat exchanger 600, and disperses the falling position of the condensed water from the first heat exchanger 500, reduces the risk of overflow of the condensed water from the water receiving section 113, and guarantees the stability and reliability of the water receiving section 113 in collecting the condensed water. At the same time, the condensed water can be fully collected by the water receiving section 113, and then flow to the pump body mounting position 111 through the drainage section 112, which clearly defines the flow direction of the condensed water in the water receiving area 110, improves the efficiency of the condensed water in the water receiving area 110 accumulating to the pump body mounting position 111, and thus guarantees that the pump body 300 can fully pump the condensed water in the water receiving area 110 to the water hitting groove 120. Of course, in other embodiments, the water receiving area 110 can also be provided in the shape of a plate, with the pump body mounting position 111 being the lowest position, and the condensed water falling from the second heat exchanger 600 being freely accumulated to the pump body mounting position 111 by gravity.

[0045] Specifically, in the present embodiment, please refer to Figure 1 and Figure 2 The water receiving section 113 is provided in the shape of high in the middle and low at both ends, and the bottom wall of the drainage section 112 is lower than the lowest part of the bottom wall of the water receiving section 113 and extends downwardly and obliquely in the direction close to the pump body mounting position 111. It can be understood that after the condensed water of the second heat exchanger 600 falls into the water receiving section 113, the water receiving section 113 in the shape of high in the middle and low at both ends causes the condensed water to flow naturally to both ends of the water receiving section 113 under the action of gravity. The bottom wall of the drainage section 112 is lower than the lowest part of the bottom wall of the water receiving section 113 and extends obliquely to the pump body mounting position 111, which further utilizes gravity to guide the condensed water to the pump body mounting position 111. At the same time, the condensed water is balanced at both ends of the water receiving section 113 and flows to the pump body mounting position 111, which reduces the risk of excessive accumulation of the condensed water at some place of the water receiving section 113, causing overflow of the condensed water. Of course, in other embodiments, the water receiving section 113 can also be provided in the shape of gradually decreasing from one end to the other end, and be communicated to the pump body mounting position 111 through the lower end of the drainage section 112, to realize the function of one-way drainage.

[0046] As for the communication mode between the pump body 300 and the filter 200, in an embodiment, please refer to Figure 1 and Figure 3The one end of the filter 200 is communicated with the pump body 300 through the pipe 400, and the other end is communicated with the water tank 120. It should be noted that the installation positions of the pump body installation position 111 and the filter 200 are flexible. The pipe 400 is communicated with the pump body 300 and the filter 200, so that the installation position requirements of the pump body 300 and the filter 200 are reduced, and the internal components of the integrated air conditioner are facilitated to be arranged. At the same time, the structural requirements of the disc body 100 are also reduced, which is beneficial to the position of the water receiving area 110, reduces the risk of overflow of the condensed water in the water receiving area 110. Without loss of generality, the filter 200 can also be communicated with the water tank 120 through the pipe 400, so that the relative positions of the filter 200 and the water tank 120 can be flexibly arranged, and the setting flexibility of the integrated air conditioner is improved. Of course, in other embodiments, a flow channel can also be arranged on the disc body 100, and the pump body 300 can be communicated with the filter 200 through the flow channel. Correspondingly, the filter 200 can also be communicated with the water tank 120 through the flow channel.

[0047] In an embodiment, please refer to Figure 1 and Figure 2 The integrated air conditioner further comprises a water level detection member 700, which is arranged in the water receiving area 110 and is used for detecting the water level of the water receiving area 110. When the second heat exchanger 600 generates more condensed water, the water level of the water receiving area 110 rises, and the condensed water can trigger the water level detection member 700. When the water level in the water receiving area 110 reaches a preset threshold, the water level detection member 700 will send a signal. At this time, it indicates that the condensed water content in the water receiving area 110 is too high, and the integrated air conditioner will control the power of the second heat exchanger 600 to reduce or even stop generating condensed water, and at the same time, the rotating speed of the fan wheel will be increased to accelerate the heat dissipation of the first heat exchanger 500 and timely discharge the water vapor generated on the first heat exchanger 500, that is, to reduce the accumulation of condensed water. In this way, the accumulation amount of condensed water in the water receiving area 110 can be controlled, so as to avoid the overflow of the condensed water in the disc body 100, and further avoid the damage of the components in the integrated air conditioner, such as the second heat exchanger 600, or avoid the pollution and damage of the surrounding environment caused by the overflow of the condensed water, and protect the user's experience. Of course, in other embodiments, a water level detection device can also be arranged in the water tank 120. When the water level of the water tank 120 reaches a preset water level, it indicates that the amount of condensed water collected in the water receiving area 110 is too much, and the power of the integrated air conditioner can be started to reduce the generation of condensed water, and the fan wheel can be accelerated to promote the discharge of the condensed water after vaporization. After a certain period of time, if the water level is still the preset water level, it indicates that the user should timely discharge the excessive condensed water in the water receiving area 110 and the water tank 120.

[0048] Further, in the embodiment, please refer to Figure 1 and Figure 2The water receiving area 110 is provided with a detection installation position 114, and the disc assembly is further provided with a pump body 300, which is installed on the water receiving area 110 and is communicated with the filter 200. The detection installation position 114 is higher than the position of the pump body 300 communicated with the water receiving area 110. The detection installation position 114 is higher than the position of the pump body 300 communicated with the water receiving area 110, which indicates that the detection installation position 114 is higher than the pump body installation position 111, so that the water level detection member 700 can monitor the higher water level change, and meanwhile, the interference of the pump body 300 to pump the condensed water in the water receiving area 110 to the water hitting groove 120 is avoided, and it is ensured that the condensed water in the water receiving area 110 can flow to the water hitting groove 120 through the filter 200. When the condensed water in the water receiving area 110 accumulates to a certain degree, the water level detection member 700 sends an alarm or triggers a control mechanism to prevent the condensed water in the water receiving area 110 from continuing to increase, thereby avoiding the water overflow from the water receiving area 110 to cause damage to the internal part of the air conditioner or to cause influence on the external environment of the air conditioner. In addition, since the detection installation position 114 is higher than the pump body installation position 111, the influence of the slight change of the water level caused by the fluctuation of the condensed water or the working of the pump body 300 on the detection result of the water level detection member 700 is avoided, and the accuracy of the water level detection is improved. Without loss of generality, the detection installation position 114 can be configured as the highest position of the water receiving area 110 and is lower than the height of the circumferential water blocking edge of the water receiving area 110, so as to ensure that the water receiving area 110 has sufficient condensed water for the pump body 300 to pump to the water hitting groove 120, and the overflow of the condensed water from the water receiving area 110 is also avoided. Of course, in other embodiments, a float ball can also be arranged on the water receiving area 110, and the detection member is arranged above the water receiving area 110. When the float ball abuts against the detection position of the detection member, the detection member is triggered to control the water level of the condensed water of the whole air conditioner, such as reducing the power of the whole air conditioner to reduce the generation of the condensed water, and accelerating the fan to promote the discharge of the condensed water after vaporization.

[0049] In an embodiment, please refer to Figure 1 and Figure 3, the first heat exchanger 500 and the second heat exchanger 600 form an avoiding space, the disc body 100 is provided with an avoiding through slot 130 corresponding to the lower part of the avoiding space, and the filter 200 is arranged in the avoiding through slot 130. It can be understood that the water receiving area 110 is located at one side of the avoiding space, and the water hitting groove 120 is located at the other side of the avoiding space. The disc body 100 is provided with the avoiding through slot 130 corresponding to the lower part of the avoiding space between the first heat exchanger 500 and the second heat exchanger 600, and after the filter 200 is arranged on the avoiding through slot 130, the avoiding space can avoid external components, such as a ceiling batten (not shown in the figure), a vertical railing of a side wall of an environment space, or the avoiding space and the avoiding through slot 130 can be used for installation of the integrated air conditioner, so that the installation stability is enhanced. Here, the avoiding batten is described and introduced. In this way, the avoiding space and the avoiding through slot 130 at the lower part of the avoiding space avoid the ceiling batten, the space of the disc body 100 is fully utilized, and the interference of the batten on the flow of the condensed water from the water receiving area 110 to the water hitting groove 120 is reduced, and the compactness of the disc body 100 is improved.

[0050] In an embodiment, referring to Figure 1 and Figure 3 , the filter 200 is arranged in a strip shape, the avoiding through slot 130 is configured as a straight slot, the filter 200 extends on the avoiding through slot 130, one end of the filter 200 is communicated with the water receiving area 110, and the other end of the filter 200 is communicated with the water hitting groove 120. It should be noted that for the integrated air conditioner, the second heat exchanger 600 and the first heat exchanger 500 are arranged in parallel and partitioned, and correspondingly, the filter 200 is arranged at the lower part of the avoiding space between the second heat exchanger 600 and the first heat exchanger 500, and the filter 200 extends in a direction intersecting the distribution of the second heat exchanger 600 and the first heat exchanger 500. The filter 200 can provide sufficient installation space at this position to ensure the filtering capacity of the filter 200 for the condensed water and improve the compactness of the integrated air conditioner. For the form that the integrated air conditioner is installed on the top of a space such as a ceiling, the filter 200 is installed at this position, so that the avoiding space can be fully utilized. The installation of the filter 200 is facilitated, the influence of the arrangement of other components of the disc body 100 is reduced, and the installation influence between the integrated air conditioner and the batten is reduced. Therefore, the integrated air conditioner is arranged in a square and compact shape, and the installation of the integrated air conditioner is facilitated. Without loss of generality, the filter 200 can be detachably arranged on the disc body 100 or integrally and fixedly arranged on the disc body 100. Of course, in other embodiments, the filter 200 can be arranged outside the disc body 100 to be arranged close to the water receiving area 110 or the water hitting groove 120, so that the internal space of the integrated air conditioner is utilized.

[0051] For the avoidance of the straight slot 130 configuration, the corresponding, the avoidance of the space also along the avoidance of the whole air conditioner shell through the slot 130, the avoidance of the slot 130 and the avoidance of the space formed by the depth can be the size of the shell in the vertical direction 80% ~ 95%. The first heat exchanger 500 and the second heat exchanger 600 are located on the opposite sides of the avoidance of the slot 130 and the avoidance of the space, the first heat exchanger 500 and the second heat exchanger 600 are separated by the avoidance of the space, that is, the avoidance of the space forms a partition for the whole air conditioner, so that the components for heat exchange in the room are arranged on the side with the second heat exchanger 600, and the components for heat exchange in the outdoor are arranged on the side with the first heat exchanger 500. Correspondingly, the avoidance of the slot 130 also partitions the condensate water of the disc body assembly, the flow section for receiving the condensate water is on one side of the avoidance of the slot 130, such as the water receiving area 110, the flow section for processing the condensate water is on the avoidance of the slot 130, such as the filter 200, and the flow section for using the condensate water is on the other side of the avoidance of the slot 130, such as the water tank 120. Here, the partition of the avoidance of the slot 130 to the disc body 100 also corresponds to the partition of the avoidance of the space to the main part of the whole air conditioner, the groove bottom of the condensate water flow path corresponding to the groove section on the side of the first heat exchanger 500 has various height differences, and the groove bottom of the groove section on the side of the second heat exchanger 600 also has various height differences, so that the condensate water flow path has clear functional partition, facilitating subsequent detection, maintenance and other operations of the condensate water flow path on the disc body 100.

[0052] The utility model discloses still propose a kind of whole air conditioner, please refer to Figure 1 And Figure 3 The whole air conditioner includes first heat exchanger 500, second heat exchanger 600 and disc body assembly, the specific structure of the disc body assembly refers to the above embodiment, since the whole air conditioner adopts all the technical solutions of the above all embodiments, at least has all the beneficial effects brought by the technical solutions of the above embodiments, hereinafter will not be repeated.

[0053] In the above-mentioned configuration of the all-in-one air conditioner as a kitchen air conditioner, the all-in-one air conditioner is installed on the top of the indoor space, such as the kitchen ceiling, toilet ceiling, etc., and the first heat exchanger 500 and the second heat exchanger 600 are arranged in parallel, forming a flat vertical rectangular avoidance space therebetween. The lower part of the avoidance space can be used to install the filter 200, reducing the interference of the filter 200 with other components on the disc body 100. When installing the all-in-one air conditioner, the avoidance space can avoid the interference of the ceiling keel, and the filter 200 can be installed on the upper part of the avoidance slot 150, which can improve the installation height of the all-in-one air conditioner. In combination with the filter 200 arranged in the avoidance slot 130, the space layout of the disc body 100 can be fully utilized, and the compactness of the disc body 100 can be improved.

[0054] In an embodiment, please refer to 1 to Figure 3 The all-in-one air conditioner further comprises a water beating device 800 arranged on the disc body 100 and between the water beating groove 120 and the first heat exchanger 500. It can be understood that the water beating device 800 can beat the accumulated water in the water beating groove 120 to the surface of the first heat exchanger 500. Due to the heat absorption effect of water evaporation, part of the heat on the first heat exchanger 500 can be taken away, especially the low-temperature condensed water, which helps to reduce the temperature of the first heat exchanger 500, thereby improving the heat dissipation efficiency of the first heat exchanger 500, so that the air conditioner can reach the set temperature faster during the refrigeration process, and the overall refrigeration efficiency is improved. Without loss of generality, the water beating device 800 comprises a water beating wheel 810 and a driving motor. The driving motor is installed on the disc body 100 and is drivingly connected to the water beating wheel 810 to rotate the water beating wheel 810 to beat the condensed water in the water beating groove 120 to the first heat exchanger 500. The condensed water can promote the cooling of the first heat exchanger 500, and at the same time, the condensed water can be consumed, reducing the need for a pipe 400 to discharge the condensed water. Of course, in other embodiments, a water spraying structure can be arranged at the bottom of the water beating groove 120 to spray the accumulated water in the water beating groove 120 to the first heat exchanger 500.

[0055] In an embodiment, please refer to Figure 1 and Figure 3, the disc body 100 is configured as a bottom disc of the integrated air conditioner. It can be understood that the disc body 100 integrates the functions of installation and condensate water receiving and drainage of the integrated air conditioner, improves the assembly convenience of the integrated air conditioner, and at the same time, the disc body 100 is configured as a bottom disc, integrates the support structure of the integrated air conditioner, and is beneficial to guarantee the structural stability of the disc body 100, thereby guaranteeing the structural strength of the water receiving area 110 and the water hitting groove 120, and further guaranteeing that the condensate water can be stably accumulated from the water receiving area 110 to the water hitting groove 120 for heat dissipation of the first heat exchanger 500. Alternatively, in another embodiment, the disc body 100 is configured as a water receiving disc of the integrated air conditioner. It can be understood that the disc body 100 is installed on the bottom disc of the integrated air conditioner, and the bottom disc is the bearing structure of the integrated air conditioner. The disc body 100 and the bottom disc are arranged separately, which reduces the structural complexity of the bottom disc, is beneficial to the forming of the disc body 100 and the bottom disc, and at the same time, it is also convenient to adjust the setting position of the disc body 100, and guarantee that the water receiving area 110 and the water hitting groove 120 of the disc body 100 can be aligned with the lower part of the second heat exchanger 600 and the first heat exchanger 500 respectively.

[0056] Among them, referring to the above description about the avoidance space and the avoidance through groove 150, for the refrigerant pipe communicated by the first heat exchanger 500 and the second heat exchanger 600, please refer to Figure 1 and Figure 3 , the refrigerant pipe communicated by the first heat exchanger 500 and the second heat exchanger 600 is arranged along the groove bottom of the avoidance through groove 130. Make full use of the space of the groove bottom of the avoidance through groove 130, reduce the space occupation of the refrigerant pipe in the integrated air conditioner, so that the integrated air conditioner is more compact and the layout is more reasonable.

[0057] The above only describes the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.

Claims

1. A disk assembly, comprising: Applied to a modular air conditioner, the modular air conditioner includes a first heat exchanger and a second heat exchanger distributed in parallel, and the panel assembly includes: The plate body has a connected water receiving area and a water dispensing trough, the water receiving area being located below the second heat exchanger and the water dispensing trough being located below the first heat exchanger; and A filter element is disposed on the disc body, and the disc body assembly forms a condensate flow path from the water receiving area through the filter element to the water trough.

2. The disc pack assembly of claim 1 wherein, The filter element is provided with an oil-absorbing felt, which forms an S-shaped water filtration channel.

3. The disc pack of claim 1 wherein, The disc assembly is also provided with a pump body, which is installed in the water receiving area and connected to the filter element.

4. The disk pack assembly of claim 3 wherein, The water receiving area is provided with a pump body mounting position for installing the pump body. The pump body mounting position is located at the lowest point of the water receiving area, and the bottom wall of the water receiving area slopes downward in the direction close to the pump body mounting position.

5. The disk pack assembly of claim 4 wherein, The water receiving area is provided with a diversion section and a water receiving section. The water receiving section is U-shaped and adapted to the bottom of the second heat exchanger. One end of the diversion section is connected to the water receiving section, and the other end is connected to the pump body mounting position.

6. The disk pack assembly of claim 5 wherein, The water receiving section is designed with a high center and low ends. The bottom wall of the diversion section is lower than the lowest point of the bottom wall of the water receiving section and extends downwards in the direction close to the pump body mounting position.

7. The disc pack of claim 3 wherein, One end of the filter element is connected to the pump body via a pipe, and the other end is connected to the water tank.

8. The disc pack of claim 1 wherein, The plate assembly also includes a water level detection element, which is disposed in the water receiving area and used to detect the water level in the water receiving area.

9. The disk pack assembly of claim 8 wherein, The water receiving area is provided with a detection installation position, and the disc assembly is also provided with a pump body. The pump body is installed in the water receiving area and connected to the filter element. The detection installation position is higher than the position of the water receiving area connected to the pump body.

10. The disc assembly of any one of claims 1 to 9, wherein, A clearance space is formed between the first heat exchanger and the second heat exchanger; The disc body is provided with a clearance groove corresponding to the lower part of the clearance space, and the filter element is disposed in the clearance groove.

11. The disc pack of claim 10 wherein, The filter element is arranged in a strip shape, the clearance channel is configured as a straight channel, the filter element extends on the clearance channel, one end of the filter element is connected to the water receiving area, and the other end is connected to the water dispensing trough.

12. A unitary air conditioner characterized by include: A first heat exchanger and a second heat exchanger are distributed in parallel. The second heat exchanger is used to exchange heat with the indoor environment, and the first heat exchanger is used to exchange heat with the outdoor environment. as well as The disk assembly as described in any one of claims 1 to 11.

13. The unitary air conditioner of claim 12, wherein, The integrated air conditioner also includes a water pumping device, which is disposed on the panel and located between the water pumping tank and the first heat exchanger.

14. The unitary air conditioner of claim 12, wherein, The tray is configured as the chassis of the integrated air conditioner, or the tray is configured as the water receiving tray of the integrated air conditioner; And / or, the first heat exchanger is configured as a condenser and the second heat exchanger is configured as an evaporator.