Water collector frame

The water collector frame structure solves the problems of easy damage and inconvenient disassembly of water collectors in evaporative cooling air conditioning units, achieving convenient disassembly, energy-saving and environmentally friendly water removal effect, and reducing unit costs.

CN223755570UActive Publication Date: 2026-01-02ZHEJIANG SINOKING AIR CONDITIONING & REFRIGERATION CO LTD
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Patent Information

Application Number
CN202520095178.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-02
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In existing evaporative cooling air conditioning units, the water collector is prone to deformation and damage, and is inconvenient to disassemble, which affects the water removal effect. Furthermore, the water removal effect is not good in tunnel-type units, increasing the unit cost.

Method used

The water collector adopts a frame structure, including square tube and slide rail design, and slides the water collector. It is sealed by sealing plate and baffle plate to ensure airtightness. The drainage pipe plate assembly is set to centrally drain water, reduce the ventilation direction size, and facilitate disassembly and assembly.

Benefits of technology

It enables convenient disassembly and assembly of the water collector, ensuring water removal effect, reducing unit size and cost, avoiding secondary water drift, and saving energy and protecting the environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water collector frame, which relates to the field of evaporative cooling type air conditioning units, and comprises a frame body, a square tube A is arranged at the top of the frame body along the horizontal direction, two ends of the square tube A are respectively connected with a square tube B along the vertical direction, and the middle parts and the bottoms of the two square tubes B are connected through a square tube D; three groups of square tubes C are arranged in the horizontal direction of the frame body at intervals, and each group of square tubes C comprises an upper square tube C, a middle square tube C and a lower square tube C, so that the upper-layer square tube C, the middle-layer square tube C and the lower-layer square tube C are formed; in each group of square tubes C, one end of each square tube C is fixedly connected with a corresponding square tube E, and the other end of each square tube C is fixedly connected with a corresponding square tube A or a square tube D; the upper and lower slideways are arranged along the horizontal direction of the frame body; and the plurality of water collectors are arranged between the corresponding upper slideways and the lower slideways in a sliding manner. The size of the water collector assembly is reduced, so that the size of a unit is reduced, and the cost of the unit is reduced; the water collector can be conveniently disassembled and assembled, and unit maintenance is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of evaporative cooling type air conditioning unit, concretely relates to a water collector frame. BACKGROUND

[0002] Evaporative cooling type air conditioning unit is the air conditioning equipment with water and air as cooling medium, provides cold and heat source for air conditioning terminal, adopts evaporative condenser, utilizes the latent heat of water evaporation to exchange heat, the unit can operate at lower condensing temperature, is a kind of high-efficiency energy-saving air conditioning equipment, is popular with users.Evaporative condenser is to realize cooling by water film, and the air supply volume and spray water volume of condenser directly influence evaporative heat exchange performance.The best face wind speed of evaporative condenser is about 3.0m / s, and the best spray volume is about 0.057kg / m*s.Due to the evaporation of water, scale is easily formed on the surface of evaporative condenser heat exchange tube, to ensure the heat exchange performance of evaporative condenser, evaporative condenser needs to be maintained.Evaporative condenser is high in wind speed, and water collector is arranged after condenser to remove water, to prevent pollution of surrounding environment of unit and save water.It is necessary to consider the maintenance operation mode of removing water collector to maintain evaporative condenser, and unit maintenance door is generally arranged after water collector to check the water removal effect of water collector.

[0003] In the existing evaporative cooling type air conditioning unit, most of water collectors are made of PVC material, and the water collector is not provided with frame or is not provided with group arrangement, which is easy to deform and damage during maintenance and disassembly, affects the subsequent water removal effect, causes water floating of unit, causes pollution and waste.Some water collectors are arranged obliquely to accelerate the drainage of upper water collector, when the oblique angle is close to 90 degrees, the ventilation area of water collector is reduced, the wind speed is increased, and the water removal effect is affected;Meanwhile, the oblique arrangement increases the ventilation direction size of water collector, increases the size of unit, and increases the cost of unit.Some water collectors are separated by partition in left-right direction to facilitate the fixation of water collector, and the left and right ends of each group of water collectors are not sealed to facilitate disassembly, and then the water removal effect of water collector is affected.For the case that air can be discharged upward and the water removal requirement is not too high, the vertical air duct can be used to enhance the water removal effect.But in the tunnel type evaporative cooling type air conditioning unit, since the air duct can only be ventilated horizontally, the water removal effect of water collector needs to be improved under the condition of horizontal air supply of fan.

[0004] Therefore, how to conveniently disassemble and assemble water collector and facilitate the maintenance operation of unit, and ensure the water removal effect of water collector is a problem to be solved. UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the deficiencies in the prior art, and provides a water collector frame, which reduces the size of water collector assembly, thereby reducing the size of unit and the cost of unit, facilitates the disassembly and assembly of water collector, facilitates the maintenance of unit, ensures the performance of unit, keeps the water removal effect of water collector for a long time, and is energy-saving and environment-friendly.

[0006] The objective of this utility model is achieved through the following technical solution: This water collector frame includes:

[0007] The frame body has a square tube A installed horizontally at its top. Two square tubes B are connected vertically at both ends of the square tube A. The middle and bottom of the two square tubes B are connected by a square tube D. Three sets of square tubes C are installed at intervals along the horizontal direction of the frame body. Each set of square tubes C includes three tubes: upper, middle and lower, thus forming three layers of square tubes C. In each set of square tubes C, one end of each square tube C is connected and fixed to a corresponding square tube E, and the other end of each square tube C is connected and fixed to a corresponding square tube A or square tube D.

[0008] The upper slide rail is arranged horizontally along the frame body and fixed to the lower part of the corresponding upper square tube C and middle square tube C;

[0009] The sliding track is arranged horizontally along the frame body and fixed to the upper part of the corresponding middle-layer square tube C and lower-layer square tube C.

[0010] Several water collectors are slidably installed between corresponding upper and lower slide tracks;

[0011] Sealing plate A connects adjacent water collectors and fixes the water collectors to their corresponding upper and lower tracks; and

[0012] Sealing plate B is used to fix the water collectors located on both sides of the frame body to the corresponding upper and lower slide rails, and the water collectors located on both sides of the frame body also seal the end face gaps through sealing plate B.

[0013] As a further technical solution, water baffles A are installed on both sides of the upper slide rail at the top of the frame body. The water baffles A and the upper slide rail are sealed together to form a water basin through holes and sealing gaskets; the top of the water baffles A is used to connect to the top box plate of the unit.

[0014] As a further technical solution, a baffle plate B is installed on the air outlet side of the sliding channel at the bottom of the frame body. A sealing gasket is installed on the baffle plate B and it is sealed to the sliding channel at the bottom of the frame body through holes. The bottom of the baffle plate B is used to connect to the reinforcing ribs on the bottom water pan of the unit.

[0015] As a further technical solution, a drainage pipe plate assembly is provided on both sides of the upper slide and lower slide in the middle of the frame body. The drainage pipe plate assembly includes a drainage pipe plate, which is sealed with the upper slide in the middle of the frame body through holes and sealing gaskets to form a water pan, and forms a drainage channel that runs through the left and right sides of the upper slide. Drainage holes are opened at the left and right ends of the bottom of the drainage pipe plate for connecting drainage hoses to drain the water collected by the water collector at the top of the frame body to the bottom water pan of the unit.

[0016] As a further technical solution, the drain pipe plate is connected with the lower chute in the middle of the frame body through the hole and the sealing gasket.

[0017] As a further technical solution, the spacing between the upper square tube C and the middle square tube C is equal to the spacing between the middle square tube C and the lower square tube C.

[0018] As a further technical solution, the gasket is arranged on the inner side of the lower chute, and the water collector is arranged on the gasket.

[0019] As a further technical solution, the drain groove is arranged on the lower chute and the gasket on the inner side of the lower chute, so that the water collected by the water collector can be easily drained.

[0020] As a further technical solution, the water collector is provided with a frame, and the water outlet holes are arranged at the frame of the top and bottom of the water collector.

[0021] As a further technical solution, the upper chute is provided with a dismounting groove on the air inlet side, so that the water collector can be easily dismounted from the middle of the frame body.

[0022] The beneficial effects of the present application are as follows:

[0023] 1. The water collector is vertically arranged, which can reduce the size of the ventilation direction of the frame body, thereby reducing the size of the entire air conditioning unit and reducing the cost of the unit.

[0024] 2. The connection parts of the frame assembly are sealed by sealing gaskets and sealing glue, which can prevent water leakage and secondary water floating, save water and energy, and protect the environment.

[0025] 3. The water collector is slidably installed in the upper and lower chutes, and the upper chute is provided with a dismounting groove on the air inlet side, so that the water collector can be easily dismounted from the middle of the frame body, and the water removal effect of the water collector can be continuously ensured.

[0026] 4. The drain pipe plate assembly is arranged between the middle and lower layers of the frame body, which can guide the water collected by the upper water collector to be drained downward and concentrated to the water pan at the bottom of the unit, so that the square tube C in the middle layer is not leaked and secondary water floating is not caused. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 The structure of the present application is shown in the figure.

[0028] Figure 2 The structure of the present application is shown in the figure.

[0029] Figure 3 The main structure of the present application is shown in the figure. Figure 2 The main structure of the present application is shown in the figure.

[0030] Figure 4 The main structure of the present application is shown in the figure.Figure 3 AA sectional view.

[0031] Figure 5 for Figure 4 A magnified view of a portion of region B in the middle.

[0032] Figure 6 for Figure 4 A magnified view of a portion of region C.

[0033] Figure 7 This is a schematic diagram of the water collector in this utility model.

[0034] Figure 8 This is a schematic diagram of the upper slide rail in this utility model.

[0035] Explanation of reference numerals in the attached drawings: baffle plate A001, diversion pipe plate 002, baffle plate B003, upper slide rail 004, lower slide rail 005, pad plate 006, sealing plate A007, sealing plate B008, drainage slot 009, disassembly slot 011, frame body 10, diversion pipe plate assembly 20, water collector 30, water outlet 31, square tube A101, square tube B102, square tube C103, square tube D104, square tube E105, drainage hose 202. Detailed Implementation

[0036] The present invention will now be described in detail with reference to the accompanying drawings:

[0037] Example: As attached Figures 1 to 8 As shown, this water collector frame includes a baffle plate A001, a diversion pipe plate 002, a baffle plate B003, an upper slide rail 004, a lower slide rail 005, a pad plate 006, a sealing plate A007, a sealing plate B008, a drainage slot 009, a disassembly slot 011, a frame body 10, a diversion pipe plate assembly 20, a water collector 30, a water outlet 31, square tubes A101, B102, C103, D104, E105, and a drainage hose 202.

[0038] Reference Appendix Figure 1 , 2The top of the frame body 10 is provided with a square tube A101 in the horizontal direction, the left and right ends of the square tube A101 are connected with a square tube B102 in the vertical direction, and the middle and bottom of the two square tubes B102 are connected and fixed by a square tube D104. Three groups of square tubes C103 are arranged in the horizontal direction of the frame body 10, and each group of square tubes C103 includes three upper, middle and lower square tubes C103 (a total of nine square tubes C103), thereby forming three layers of square tubes C103 (three in each layer). In each group of square tubes C103, one end of each square tube C103 is connected and fixed with a corresponding square tube E105, and the other end of each square tube C103 is connected and fixed with a corresponding square tube A101 or square tube D104.

[0039] Two groups of upper slides 004 are arranged in the horizontal direction of the frame body 10, one group is fixed at the lower part of the upper layer square tube C103, and the other group is fixed at the lower part of the middle layer square tube C103. Two groups of lower slides 005 are also arranged in the horizontal direction of the frame body 10, one group is fixed at the upper part of the middle layer square tube C103, and the other group is fixed at the upper part of the lower layer square tube C103. The upper slide 004 fixed at the lower part of the upper layer square tube C103 cooperates with the lower slide 005 fixed at the upper part of the middle layer square tube C103, and the upper slide 004 fixed at the lower part of the middle layer square tube C103 cooperates with the lower slide 005 fixed at the upper part of the lower layer square tube C103. Six groups of water collectors 30 (three groups in each layer, a total of two layers) are slidingly installed between the corresponding upper slide 004 and lower slide 005, and in this embodiment, there are six groups of water collectors 30, which can also be other quantities.

[0040] As shown in Figure 2 、 3 , 4, the sealing plate A007 is connected between adjacent water collectors 30, and the water collectors 30 and the corresponding upper slide 004 and lower slide 005 are fixed. The sealing plate B008 fixes the water collectors 30 on both sides of the frame body 10 on the corresponding upper slide 004 and lower slide 005, and the water collectors 30 on both sides of the frame body 10 are also sealed by the sealing plate B008.

[0041] Further, the upper slide 004 on the top of the frame body 10 is provided with a water baffle A001 on both sides, the water baffle A001 and the upper slide 004 are sealed by hole positions and sealing gaskets to form a water tray, and at the same time, the top of the water baffle A001 is used to connect the top box plate of the unit. The air outlet side of the lower slide 005 at the bottom of the frame body 10 is provided with a water baffle B003, the water baffle B003 is provided with a sealing gasket, and is sealingly connected with the lower slide 005 at the bottom of the frame body 10 through the hole position, and at the same time, the bottom of the water baffle B003 is used to connect the reinforcing rib on the bottom water tray of the unit.

[0042] Referring to the accompanying Figure 2 、 4, 6, the upper slide 004 and the lower slide 005 both sides of the middle part of the frame body 10 are provided with drainage pipe plate assembly 20, the drainage pipe plate assembly 20 includes drainage pipe plate 002, the drainage pipe plate 002 is sealed with the upper slide 004 in the middle part of the frame body 10 through hole and sealing gasket and is surrounded by a water tray, and the upper slide 004 both sides form the through left and right drainage channel, the left and right ends of the bottom of the drainage pipe plate 002 are provided with drainage holes, and the drainage holes are used for connecting the drainage hose 202, so that the water collected by the water collector 30 on the upper part of the frame body 10 is drained to the bottom water tray of the unit, preferably, the drainage pipe plate 002 is connected with the lower slide 005 in the middle part of the frame body 10 through the hole and the sealing gasket, as shown in Figure 2 The gasket 006 is arranged in the inner side of the lower slide 005, the water collector 30 is arranged on the gasket 006, and the drainage grooves 009 are arranged on the lower slide 005 and the gasket 006 in the inner side of the lower slide 005, so that the water collected by the water collector 30 is conveniently drained downward.

[0043] As shown in Figure 7 The water collector 30 is provided with a frame on the outer periphery, and the frame is provided with water outlet holes 31 at the top and the bottom of the water collector 30. Figure 8 As shown in

[0044] Preferably, the spacing between the upper square tube C103 and the middle square tube C103 is equal to the spacing between the middle square tube C103 and the lower square tube C103, so that the size of the water collector is uniform. Sealing gaskets are arranged on the surfaces of the connection parts of the upper slide 004, the lower slide 005, the sealing plate A 007 and the sealing plate B 008 and the water collector 30. The connection gaps between the water baffle A 001, the drainage pipe plate 002 and the water baffle B 003 and the square tubes C103 are sealed by sealing glue, so that water cannot flow out from the connection gaps.

[0045] The working process of the utility model is as follows:

[0046] The utility model uses the frame body 10 to support the water collector 30, the water collector 30 can move freely in the upper slide 004 and the lower slide 005, when the unit is overhauled, the internal condition of the unit can be observed by sliding the water collector 30, and it is not necessary to remove all the water collectors for treatment. After the frame structure is connected with the unit, the overall strength of the unit can be enhanced, and for large-size units, the local strengthening treatment for enhancing the strength of the body can be omitted. The upper and lower layers of the frame are used to assemble the water collector, which is convenient for disassembling the water collector and meets the height limit requirement of road transportation. When the square tube C103 of the frame is provided with multiple holes, the upper slide 004 and the lower slide 005 fixed on the square tube C103 can be moved forward and backward by using different fixing holes, and then the size of the water collector air inlet space can be adjusted, and the water removal effect of the water collector can be improved to a certain extent.

[0047] The upper slide 004 and the water baffle A001 on both sides are sealed to form a water tray, and baffles are arranged on the front and rear sides to block the air duct of the ventilation at the top layer square tube C103, and to avoid the spray water at the upper part of the unit from entering the water tray, so as to ensure that the top layer square tube C103 is not leaked and does not cause secondary water floating. The drain pipe plate assembly 20 and the upper slide 004 and the lower slide 005 of the middle layer are sealed to form a water tray, and drain pipe plates 002 are arranged on the front and rear sides to block the air duct of the ventilation at the middle layer square tube C103. The water collected by each group of water collectors in the upper layer can be quickly discharged into the water tray, and the drain hose 202 arranged on the drain pipe plate assembly 20 can be concentrated to the bottom water tray of the unit, so as to ensure that the middle layer square tube C103 is not leaked and does not cause secondary water floating. The water baffle B003 on the bottom layer square tube C103 and the lower slide 005 block the air duct of the ventilation at the bottom layer square tube C103, and the water collected by each group of water collectors in the lower layer can be quickly discharged into the bottom water tray of the unit, so as to ensure that the bottom layer square tube C103 is not leaked and does not cause secondary water floating.

[0048] In order to ensure the water removal effect of the unit, the connection gaps of the water collector frame assembly at all places need to be sealed: the upper slide 004, the lower slide 005, the sealing plate A007 and the sealing plate B008 and the connection surfaces of each water collector need to be provided with sealing gaskets. The connection gaps between the water baffle A001, the drain pipe plate 002 and the water baffle B003 and the square tube C103 of each layer need to be sealed with sealing glue.

[0049] The water collector 30 is provided with a frame, which is convenient for disassembly and assembly; and the top and bottom frames of the water collector 30 are provided with water outlet holes 31. The number of water collectors 30 in each layer is not less than 3 groups, which is convenient for disassembly and assembly of the water collector. The specific number of water collectors 30 needs to meet the size of the water collector, which can be conveniently in and out of the unit maintenance door. The air inlet side of the upper slide 004 is provided with a dismounting slot 011, which is convenient for dismounting the water collector 30 from the middle of the frame. In addition, the water collector 30 is vertically arranged, which reduces the size of the ventilation direction of the frame body 10, and can reduce the size of the air conditioning unit. The connection parts of the frame body 10 are sealed, which does not leak water and does not cause secondary water floating, reduces water consumption, and is energy-saving and environment-friendly. The water collector is convenient to disassemble and assemble, which can continuously ensure the water removal effect of the water collector.

[0050] In the embodiment, the width size of the square tube used in the water collector assembly is 40mm. The number of drain hoses 202 arranged on the drain pipe plate assembly 20 is 2, and for large units, the number of drain pipes can be appropriately increased. The size of the ventilation direction of the water collector is 390mm, and the adjustable size is 390±100mm.

[0051] It can be understood that equivalent replacement or change of the technical scheme and the utility model concept of the utility model by those skilled in the art should belong to the protection range of the claims attached to the utility model.

Claims

1. A water collector frame, characterized in that, It comprises: The frame body (10) is provided with a square tube A (101) at the top in the horizontal direction, and a square tube B (102) is connected at both ends of the square tube A (101) in the vertical direction, respectively. The middle part and the bottom of the two square tubes B (102) are connected by a square tube D (104). Three groups of square tubes C (103) are arranged in the horizontal direction of the frame body (10) and are spaced apart. Each group of square tubes C (103) includes three upper, middle and lower square tubes C (103), thereby forming three layers of square tubes C (103). In each group of square tubes C (103), one end of each square tube C (103) is connected and fixed with a corresponding square tube E (105), and the other end of each square tube C (103) is connected and fixed with a corresponding square tube A (101) or square tube D (104); The upper slide (004) is arranged in the horizontal direction of the frame body (10) and is fixed at the lower part of the corresponding upper layer square tube C (103) and middle layer square tube C (103); The lower slide (005) is arranged in the horizontal direction of the frame body (10) and is fixed at the upper part of the corresponding middle layer square tube C (103) and lower layer square tube C (103); A plurality of water collectors (30) are slidably installed between the corresponding upper slide (004) and lower slide (005); The sealing plate A (007) is connected between adjacent water collectors (30) and fixes the water collectors (30) with the corresponding upper slide (004) and lower slide (005); and The sealing plate B (008) is used to fix the water collectors (30) on both sides of the frame body (10) on the corresponding upper slide (004) and lower slide (005), and the water collectors (30) on both sides of the frame body (10) are also sealed by the sealing plate B (008) end face gap.

2. The water collector frame of claim 1, wherein: Water baffle A (001) is arranged on both sides of the upper slide (004) at the top of the frame body (10), and the water baffle A (001) and the upper slide (004) are sealed and surrounded by hole position and sealing gasket to form a water tray; the top of the water baffle A (001) is used to connect the top box plate of the unit.

3. The water collector frame of claim 1, wherein: The water baffle B (003) is arranged on the air outlet side of the lower slide (005) at the bottom of the frame body (10), the sealing gasket is arranged on the water baffle B (003), and the lower slide (005) at the bottom of the frame body (10) is sealed and connected through the hole position; the bottom of the water baffle B (003) is used to connect the reinforcing rib on the bottom water tray of the unit.

4. The water collector frame of claim 1, wherein: Drain pipe plate assembly (20) is arranged on both sides of the upper slide (004) and lower slide (005) in the middle part of the frame body (10), which comprises a drain pipe plate (002). The drain pipe plate (002) and the upper slide (004) in the middle part of the frame body (10) are sealed and surrounded by hole position and sealing gasket to form a water tray, and form a through left and right drainage channel on both sides of the upper slide (004). Drainage holes are formed at the left and right ends of the bottom of the drain pipe plate (002) for connecting the drainage hose (202) to drain the water collected by the water collector (30) at the upper part of the frame body (10) to the bottom water tray of the unit.

5. The water collector frame of claim 4, wherein: The drainage tube plate (002) is connected with the lower slide (005) in the middle of the frame body (10) through a hole and a sealing gasket.

6. The water collector frame of claim 1, wherein: The spacing between the upper square tube C (103) and the middle square tube C (103) is equal to the spacing between the middle square tube C (103) and the lower square tube C (103).

7. The water collector frame of claim 1, wherein: The lower slide (005) is provided with a backing plate (006) on the inner side, and the water collector (30) is placed on the backing plate (006).

8. The water collector frame of claim 7, wherein: The lower slide (005) and the backing plate (006) on the inner side of the lower slide (005) are both provided with a drainage slot (009), which facilitates the downward drainage of the water collected by the water collector (30).

9. The water collector frame of claim 1, wherein: The water collector (30) is provided with a frame, and the water outlet (31) is arranged at the frame at the top and bottom of the water collector (30).

10. The water collector frame of claim 1, wherein: The upper slide (004) is provided with a dismounting slot (011) on the air inlet side, which facilitates the dismounting of the water collector (30) from the middle of the frame body (10).