Water-cooling vertical cabinet type temperature control energy-saving air cooler

By immersing the wet curtain in clean water for immersion, and using electric push rods to drive the frame and push plate up and down, so that the clean water can fully flow into the channel for cleaning, the existing cold air fan's low cleaning effect and waste of water is solved, and more efficient wet curtain cleaning and continuous blowing of cold air is achieved.

CN120084016AActive Publication Date: 2025-06-03CHANGSHU REFRIDGERATING EQUIP FOR SPECIAL PURPOSE MFG COOPERATION
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Patent Information

Application Number
CN202510572514.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-06-03
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

The existing water-cooled vertical cabinet cooler is low in effect when cleaning wet curtains and is prone to waste of water and pollution in the working environment.

Method used

By switching the wet curtain to a horizontal state, it is completely immersed in clean water for immersion operation, and using an electric push rod to drive the frame and push plate to reciprocate up and down, so that the clean water can fully flow into the channel for cleaning, and at the same time, the lower part of the wet curtain is replenished with targeted water through the pipe.

Benefits of technology

It improves the cleaning effect of wet curtains, avoids waste of water and pollution of the working environment. At the same time, the cooler can continuously blow out the cold air without interrupting the cold air operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of air coolers, in particular to a water-cooling vertical cabinet type temperature control energy-saving air cooler which comprises an electric push rod, a first square frame and the like. A plurality of electric push rods are fixedly connected to the box body; the telescopic ends of all the electric push rods are fixedly connected with a square frame I; the two narrow side faces of the first square frame are each rotationally connected with a connecting block through an electric rotating shaft. Each connecting block is fixedly connected with a wet curtain; after the wet curtain is switched to the horizontal state, the wet curtain can be completely immersed in clean water of the box body for immersion cleaning operation, the channel on the wet curtain can also be switched to the vertical state, the clean water can fully flow into the channel to clean the inner side of the channel, and compared with spraying type self-cleaning of an existing air cooler, the cleaning efficiency is greatly improved. According to the wet curtain cleaning device, the wet curtain is immersed in water in a vertical reciprocating mode to press the water for cleaning, so that the wet curtain cleaning effect is better, water waste and water pollution to the working environment cannot be caused, and meanwhile, the cold air blowing operation does not need to be interrupted.
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Description

Technical Field

[0001] The present invention relates to the technical field of air coolers. More specifically, the present invention relates to a water-cooled vertical cabinet type temperature-controlled energy-saving air cooler. Background Art

[0002] The water-cooled vertical cabinet type air cooler cools down by the evaporation of water to absorb heat. The water evaporation cooling does not require a compressor, and its power consumption is only 1 / 8 of that of a traditional air conditioner, and there is no Freon emission, which is beneficial to energy conservation and emission reduction.

[0003] During use, the clear water in the water tank is conveyed to the wet curtain and wets it. The wet curtain is provided with a number of channels that are generally horizontal as a whole. The fan in the air cooler sucks air, so that the air in the external environment passes through the horizontal channels of the wet curtain and then flows out from the air outlet of the air cooler. When the air passes through the horizontal channels of the wet curtain, an evaporation reaction will occur, causing the air temperature to drop, so that the air cooler blows out cold air. However, when the air in the external environment passes through the horizontal channels of the wet curtain, impurities in the air will adhere to the wet curtain. Therefore, it is necessary to manually clean the wet curtain regularly. Although some existing air coolers are provided with an automatic cleaning function, they can only simply clean the wet curtain by flushing, and the cleaning effect is low. Moreover, the wet curtain is usually arranged on the side position of the air cooler. During the flushing process, some clear water will pass through the wet curtain and spray onto the ground, polluting the working environment and causing water waste.

[0004] In summary, the present application proposes a water-cooled vertical cabinet type temperature-controlled energy-saving air cooler to improve the above-mentioned technical problems. Summary of the Invention

[0005] In order to overcome the disadvantages that the existing equipment has a low cleaning effect on the wet curtain by using the flushing method, and the clear water is easy to spray onto the ground to pollute the working environment and cause water waste, the present invention provides a water-cooled vertical cabinet type temperature-controlled energy-saving air cooler.

[0006] The technical solution is as follows:

[0007] A water-cooled vertical cabinet type temperature-controlled energy-saving air cooler includes a box body, a box door and a fan component; a number of box doors are rotatably connected to the box body; a fan component is fixedly connected inside the box body; a ventilation opening one is provided on the box body; a ventilation opening two is provided on each of the two narrow side surfaces of the box body; it further includes an electric push rod, a square frame one, a connecting block, a wet curtain and a conveying component; a number of electric push rods are fixedly connected to the box body; a square frame one is fixedly connected to the telescopic ends of all the electric push rods, and the square frame one is in contact with the inner wall of the box body; a connecting block is rotatably connected to each end of the square frame one through an electric rotating shaft; a wet curtain is fixedly connected to each connecting block, and the wet curtain is opposite to the corresponding ventilation opening two; a number of wave parts are provided on the wet curtain; a number of channels are formed between adjacent wave parts; a conveying component is connected to the box body, and the conveying component is used for conveying the clear water in the box body to the upper part of the wet curtain.

[0008] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, the conveying assembly includes a first pipeline, a second pipeline and a water pump; the first pipeline is fixedly connected to the box body, and the first pipeline is communicated with the inside of the box body; the second pipeline is communicated with the first pipeline; the second pipeline is U-shaped, and both ends of the second pipeline penetrate into the inner side of the box body and are located above the corresponding wet curtain; a plurality of small holes are formed at both ends of the second pipeline; a water pump is installed on the first pipeline.

[0009] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, it further includes a shielding assembly, and the shielding assembly includes a second square frame and a baffle; a second square frame is fixedly connected to each of the two ventilation openings II of the box body; a plurality of baffles are rotatably connected to each second square frame through electric rotating shafts.

[0010] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, it further includes a third pipeline and an extrusion unit; a plurality of third pipelines penetrate through the box body; a plurality of small holes are formed in each third pipeline, and the small holes are aligned with the lower part of the corresponding wet curtain; an extrusion unit is connected to the box body, and the extrusion unit is used to extrude the water in the box body into the third pipeline.

[0011] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, the extrusion unit includes a push plate, a box body and a lid; the push plate is fixedly connected to the lower side of the first square frame; the upper part of the push plate is conical; the box body is fixedly connected to the lower part of the inner side of the box body and is located below the push plate; the lid is screwed to the bottom of the box body.

[0012] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, filters are provided at the input ends of the first pipeline and the third pipeline.

[0013] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, it further includes a water absorption block; a plurality of inclined water absorption blocks are fixedly connected to the wet curtain.

[0014] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, it further includes a wind guiding plate; a plurality of wind guiding plates are rotatably connected to the box body through electric rotating shafts, and the wind guiding plates are located inside the first ventilation opening.

[0015] Furthermore, in the above-mentioned water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, an intelligent adjustment module is provided on the box body, and the intelligent adjustment module is electrically connected to the fan component.

[0016] The beneficial effects are as follows:

[0017] 1. After switching the wet curtain to the horizontal state, it can be completely immersed in the clean water in the box for immersion washing operation. The channels on it can also be switched to the vertical state, allowing the clean water to fully flow into the channels to clean the inner side. Compared with the spray self-cleaning of existing cooling fans, in the present invention, by reciprocatingly immersing the wet curtain up and down in water and pressing the water for cleaning, the cleaning effect of the wet curtain is better, and it will not cause water waste and water pollution to the working environment. At the same time, when cleaning the wet curtain in this way, the cooling fan can still continuously blow cold air without interrupting the cold air blowing operation, which has strong practicability; 2. While driving one of the wet curtains to reciprocate up and down for cleaning operation through the square box 1, it will also drive the push plate to reciprocate up and down, so that the push plate squeezes the clean water in the box body into the wet curtain to supplement clean water for the wet curtain to meet the greater evaporation heat absorption demand after switching to single wet curtain ventilation. At the same time, it takes time for the clean water to diffuse from top to bottom in the wet curtain. After the ventilation volume of the wet curtain increases, some of the clean water has not diffused to the lower part of the wet curtain and has been evaporated, resulting in poor evaporation effect in the lower part of the wet curtain. Therefore, targeted supplementary clean water is provided to the lower part of the wet curtain through pipeline 3, which is beneficial to improving the evaporation effect; 3. By using the water absorption block, the evaporation area is increased and the air cooling effect is improved. At the same time, the inclined water absorption block divides the channel into three flow channels. When the clean water flows from the position with a large inner diameter of the flow channel to the position with a small inner diameter, both the water pressure and flow rate of the clean water will increase, which is beneficial to improving the cleaning effect. Description of the Drawings

[0018] Figure 1 Shows the structural schematic diagram of the water-cooled floor-standing temperature-controlled energy-saving cooling fan of the present invention; Figure 2 Shows the first perspective sectional view of the water-cooled floor-standing temperature-controlled energy-saving cooling fan of the present invention; Figure 3 Shows the second perspective sectional view of the water-cooled floor-standing temperature-controlled energy-saving cooling fan of the present invention; Figure 4 Shows the installation position schematic diagram of pipeline 3 of the present invention; Figure 5 Shows the combined structural schematic diagram of the connecting block and the wet curtain of the present invention; Figure 6 Shows the rotational horizontal state diagram of the wet curtain of the present invention; Figure 7 Shows the installation position schematic diagram of the lid of the present invention; Figure 8 Shows the structural schematic diagram of the water absorption block of the present invention; Figure 9 Shows the top view of the water absorption block of the present invention.

[0019] Reference numerals in the drawings: 1 - box body, 2 - box door, 3 - fan component, 4 - electric push rod, 5 - square one, 6 - connecting block, 7 - wet curtain, 201 - pipe one, 202 - pipe two, 203 - water pump, 204 - square two, 205 - baffle, 206 - pipe three, 207 - push plate, 208 - box body, 209 - lid, 2011 - water absorption block, 2012 - air guide plate, 91 - ventilation opening one, 92 - ventilation opening two, 93 - wave part, 94 - channel. Specific implementation mode

[0020] The present invention will be specifically described below with reference to the accompanying drawings. Embodiment 1

[0021] A water-cooled vertical cabinet-type temperature-controlled energy-saving air cooler, as Figures 1-7 described, includes a box body 1, a box door 2 and a fan component 3; two box doors 2 are rotatably connected to the box body 1, and the box body 1 is made of alloy material; a fan component 3 is bolted inside the box body 1; a ventilation opening one 91 is opened on the box body 1, and the ventilation opening one 91 is located above the fan component 3; one ventilation opening two 92 is opened on each of the two narrow sides of the box body 1; it also includes an electric push rod 4, a square one 5, a connecting block 6, a wet curtain 7 and a conveying component; four electric push rods 4 are bolted to the box body 1; a square one 5 is fixedly connected to the telescopic ends of all the electric push rods 4, and the square one 5 is in contact with the inner wall of the box body 1, and the square one 5 is made of metal material; a connecting block 6 is rotatably connected to the left end and the right end of the square one 5 through an electric rotating shaft, and the electric rotating shaft is composed of a motor and a transmission rod; a wet curtain 7 is bolted to each connecting block 6, and the wet curtain 7 is directly opposite to the corresponding ventilation opening two 92; a plurality of wave parts 93 are arranged on the wet curtain 7; a plurality of channels 94 are formed between adjacent wave parts 93; a conveying component is connected to the box body 1.

[0022] The conveying component includes a pipe one 201, a pipe two 202 and a water pump 203; the pipe one 201 is fixedly connected to the box body 1, and the pipe one 201 is communicated with the inside of the box body 1. The pipe one 201 can be made of metal material or plastic material; the pipe two 202 is communicated and fixedly connected to the pipe one 201; the pipe two 202 is U-shaped, and both ends of the pipe two 202 penetrate into the inner side of the box body 1 and are located above the corresponding wet curtain 7; a plurality of small holes are opened at both ends of the pipe two 202; a water pump 203 is installed on the pipe one 201. Starting the water pump 203 allows the water in the box body 1 to flow into the pipe two 202 through the pipe one 201 and then flow out from the small holes at both ends of the pipe two 202.

[0023] It also includes an occlusion component, which includes a second square frame 204 and a baffle 205. A second square frame 204 is bolted to each of the two second ventilation openings 92 of the box body 1. A plurality of baffles 205 are rotatably connected to each second square frame 204 through an electric rotating shaft, and the electric rotating shaft is composed of a motor and a rotating rod.

[0024] It also includes a third pipeline 206 and an extrusion unit. Four third pipelines 206 are penetrated through the box body 1. A plurality of small holes are formed in each third pipeline 206, and the small holes are aligned with the lower part of the corresponding wet curtain 7. An extrusion unit is connected to the box body 1.

[0025] The extrusion unit includes a push plate 207, a box body 208 and a lid 209. The push plate 207 is fixedly connected to the lower side of the first square frame 5. The upper part of the push plate 207 is conical. The box body 208 is bolted to the lower part inside the box body 1, and the box body 208 is located below the push plate 207. The lid 209 is screwed to the bottom of the box body 208, and the operator unscrews the lid 209 manually and then drains the water in the box body 208.

[0026] Filters are provided at the input ends of the first pipeline 201 and the third pipeline 206, which can intercept most of the impurities in the clear water, reduce the amount of impurities sprayed onto the wet curtain 7, reduce the influence on the evaporation reaction, and reduce the cleaning frequency of the wet curtain 7.

[0027] First, the operator opens the box door 2, then pours clear water into the box body 1, with the liquid level of the clear water lower than the lower side surface of the first square frame 5, and then closes the box door 2. The water pump 203 is started to make the clear water in the box body 1 flow into the second pipeline 202 through the first pipeline 201, and then flow downward from the small holes on the second pipeline 202 onto the wet curtain 7 to wet the wet curtain 7. The excess clear water flows back to the lower part of the box body 1. During this process, the baffle 205 intercepts the clear water dripping from the wet curtain 7 to prevent the clear water from dripping onto the ground and affecting the working environment. The air blower component 3 is started to make the air in the external environment flow in from the second ventilation opening 92, pass through the channel 94 and flow into the inside of the box body 1, and then flow out from the first ventilation opening 91. When the air flows through the second ventilation opening 92, it undergoes an evaporation reaction with the clear water adsorbed on the wet curtain 7, absorbs the heat in the air, and cools the air.

[0028] During regular cleaning, the electric rotating shaft connecting the first square frame 5 and the right connecting block 6 is started. Based on the view from the front to the back, the motor of the electric rotating shaft drives the right connecting block 6 to rotate counterclockwise by 90° through the rotating rod, so that the connecting block 6 drives the wet curtain 7 to rotate into the inside of the first square frame 5, as Figure 6 shown. At this time, the wet curtain 7 rotates from the vertical state to the horizontal state, and the horizontally arranged channel 94 of the wet curtain 7 is switched to the vertical direction. It should be noted that as Figure 4 、 Figure 5 and Figure 6As shown, the width of the wet curtain 7 is the same as that of the connecting block 6, and the width of the connecting block 6 is the same as the inner width of the first square frame 5. Moreover, the length of the inner side of the first square frame 5 between the two connecting blocks 6 is greater than the length of the wet curtain 7, which can ensure that the wet curtain 7 rotates into the inner side of the first square frame 5. It should be noted that the most protruding end face of the electric push rod 4 facing the first square frame 5 is not on the rotation path of the wet curtain 7, that is, the electric push rod 4 will not interfere with the rotation of the wet curtain 7. Then, start the electric push rod 4. The reciprocating telescopic movement of the telescopic end of the electric push rod 4 drives the first square frame 5 to perform reciprocating up and down movements. When the first square frame 5 performs reciprocating up and down movements, it synchronously drives the two connecting blocks 6 to perform reciprocating up and down movements. The connecting block 6 drives the corresponding wet curtain 7 to perform reciprocating up and down movements, so that the wet curtain 7 rotated to the horizontal state on the right reciprocates and immerses in the clear water in the box body 1 to reciprocally clean the wet curtain 7. It should be noted that the wet curtain 7 on the left that has not been rotated to the horizontal state reciprocates up and down relative to the box body 1. During this process, the wet curtain 7 rotated to the horizontal state on the right is always immersed in the clear water. And since the channels 94 on the wet curtain 7 rotated to the horizontal state have been switched to the vertical state, the clear water can fully flow into the channels 94 to clean the inner side thereof. After the cleaning is completed, the connecting block 6 drives the wet curtain 7 on the right to rotate back to the vertical state. Then, start the electric rotating shaft on the connecting block 6 on the left, and then repeat the above operations to clean the wet curtain 7 on the left. During the cleaning process of the wet curtain 7 on the right, start the electric rotating shaft on the right baffle 205 to rotate all the right baffles 205 to the vertical state to block the second air vent 92 on the right. At this time, the air in the external environment only flows into the inner side of the box body 1 through the second air vent 92 on the left and passes through the channels 94 on the wet curtain 7 on the left to undergo an evaporation cooling reaction and is converted into cold air, and then is blown out from the first air vent 91. During the cleaning process of the wet curtain 7 on the left, the air can also be cooled by the wet curtain 7 on the right, that is, after the wet curtain 7 is switched to the horizontal state, it can be completely immersed in the clear water in the box body 1 for immersion cleaning operation. The channels 94 on it can also be switched to the vertical state, so that the clear water can fully flow into the channels 94 to clean the inner side thereof. Compared with the spray self-cleaning of the existing air cooler, in the present invention, the wet curtain 7 reciprocates up and down and immerses in the water, and the water is pressed for cleaning, so that the cleaning effect of the wet curtain 7 is better, and it will not cause water waste and water pollution to the working environment. At the same time, when the wet curtain 7 is cleaned in this way, the air cooler can still continuously blow out cold air without interrupting the cold air blowing operation, and has strong practicability.

[0029] It should be noted that when the wet curtain 7 cools the external air in the vertical state and when the wet curtain 7 is in the horizontal state for cleaning, the motor of the electric rotating shaft of the first square frame 5 is in the self-locking state. The self-locking function of the motor is common knowledge, and the principle will not be elaborated too much. Furthermore, the electric rotating shaft locks the connecting block 6, and the connecting block 6 cannot rotate, so that the wet curtain 7 can remain stable in both the vertical state and the horizontal state.

[0030] During the cleaning process, one of the vents 92 serving as the air inlet is closed. With the air volume blown through vent 91 remaining unchanged, the air intake of a single vent 92 increases, causing the air flow rate through a single wet curtain 7 to increase. As a result, the evaporation rate of the clear water on the wet curtain 7 increases. Therefore, during the cleaning process, when the telescopic end of the electric push rod 4 drives the first square frame 5 downward, the first square frame 5 simultaneously drives the push plate 207 fixedly connected thereto downward. Since the length and width of the push plate 207 are the same as the inner side of the box body 208, even when the push plate 207 moves to the inner side of the box body 208 and the outer side of the push plate 207 is in close contact with the inner side of the box body 208 at this time, the push plate 207 squeezes the clear water in the box body 208, forcing the clear water into the third pipe 206 and then spraying it onto the wet curtain 7 through the small holes on the third pipe 206 to replenish the clear water for the wet curtain 7 to meet the greater evaporation heat absorption requirements of the wet curtain 7. It should be noted that the third pipe 206 only contacts the wet curtain 7 and is not directly connected to the wet curtain 7, that is, the third pipe 206 will not interfere with the rotation of the wet curtain 7 and the up and down movement of the wet curtain 7 following the first square frame 5. When the first square frame 5 is driven upward by the electric push rod 4, it will also drive the push plate 207 upward away from the box body 208, stopping the blocking of the box body 208, so that the clear water in the box body 1 flows into the box body 208 to automatically replenish the clear water in the box body 208. It should be noted that the length and width of the push plate 207 are smaller than the inner side of the box body 1, that is, there is a gap between the push plate 207 and the box body 1, and the clear water is replenished into the box body 208 through the gap between the push plate 207 and the box body 1. Since the first square frame 5 is driven by the electric push rod 4 to perform reciprocating up and down movements during the cleaning process of the wet curtain 7, the push plate 207 performs reciprocating up and down movements, and further, the third pipe 206 intermittently sprays clear water onto the wet curtain 7. That is, while the first square frame 5 drives one of the wet curtains 7 to perform reciprocating up and down movements for cleaning operations, it will also drive the push plate 207 to perform reciprocating up and down movements, causing the push plate 207 to squeeze the clear water in the box body 208 into the wet curtain 7 to replenish the clear water for the wet curtain 7 to meet the greater evaporation heat absorption requirements after switching to ventilation with a single wet curtain 7. At the same time, it takes time for the clear water to diffuse from top to bottom in the wet curtain 7. After the ventilation volume of the wet curtain 7 increases, some of the clear water has not diffused to the lower part of the wet curtain 7 before it is evaporated, resulting in a low evaporation effect in the lower part of the wet curtain 7. Therefore, targeted replenishment of clear water to the lower part of the wet curtain 7 through the third pipe 206 is beneficial to improving the evaporation effect.

[0031] When regularly cleaning the sludge in the box body 1, the water pump 203 is turned off to stop sucking the water in the box body 1. The wet curtain 7 is still in a wet state and can carry out the evaporation reaction. At this time, the sludge in the clear water at the lower side of the box body 1 begins to settle. Since the upper part of the push plate 207 is conical, the sludge settles into the box body 208. Then, the electric push rod 4 is started. The electric push rod 4 drives the square frame 1 5 to move downward, and the square frame 1 5 drives the push plate 207 to move downward, so that the push plate 207 moves to the inside of the box body 208. At this time, the push plate 207 divides the clear water in the box body 1 into two parts. The upper part of the push plate 207 is the upper clear water, and the lower part of the push plate 207 is the lower sewage. Then, the worker unscrews the lid 209 and discharges the sewage below the push plate 207 to achieve convenient sewage discharge. Embodiment 2

[0032] On the basis of Embodiment 1, as Figure 8 and Figure 9 shown, it further includes a water absorption block 2011; a plurality of inclined water absorption blocks 2011 are fixedly connected to the wet curtain 7.

[0033] It further includes a wind guide plate 2012; a plurality of wind guide plates 2012 are rotatably connected to the box body 1 through electric rotating shafts. The wind guide plates 2012 are located inside the ventilation opening 1 91. The electric rotating shaft is composed of a motor and a transmission rod. The wind guide plates 2012 are driven to rotate through the electric rotating shaft, so as to adjust the orientation of the air flow channel formed by adjacent wind guide plates 2012 and adjust the wind direction.

[0034] An intelligent adjustment module is arranged on the box body 1. The intelligent adjustment module is composed of an environmental temperature sensor and an electronic controller. The electronic controller is electrically connected to the fan component 3. The environmental temperature is monitored through the environmental temperature sensor. According to the magnitude of the environmental temperature, the power of the fan component 3 is adjusted through the electronic controller, so that the cold air volume can be adjusted and the environmental temperature can be adjusted.

[0035] After the clear water drips onto the wet curtain 7, it will penetrate into the wave part 93, and then penetrate from the wave part 93 to the water absorption block 2011. When the air flows through the channel 94, it will not only contact the clear water adsorbed on the wave part 93, but also contact the clear water adsorbed on the water absorption block 2011, thereby increasing the evaporation area and improving the air cooling effect.

[0036] During the cleaning process, the wet curtain 7 drives the water absorption block 2011 to flip to a vertical state. When the wet curtain 7 drives the vertically placed water absorption block 2011 to move vertically in the clear water, the clear water will flow upward or downward relative to the channel 94. The inclined water absorption block 2011 divides the channel 94 into three flow channels. The flow channel between the wave portion 93 and the water absorption block 2011 has a larger inner diameter on the side facing the box body 1 and a smaller inner diameter on the side away from the box body 1. The flow channel of the adjacent water absorption block 2011 has a smaller inner diameter on the side facing the box body 1 and a larger inner diameter on the side away from the box body 1. When the clear water flows from the position with a larger inner diameter of the flow channel to the position with a smaller inner diameter, both the water pressure and the flow velocity of the clear water will increase, which is beneficial to improving the cleaning effect.

[0037] Although the present invention has been described with reference to exemplary embodiments, it should be understood that the present invention is not limited to the disclosed exemplary embodiments. The scope of the following claims should be given the broadest interpretation so as to cover all modifications and equivalent structures and functions.

Claims

1. A water-cooled cabinet-type temperature-controlled energy-saving air cooler, comprising a box body (1); a plurality of box doors (2) are rotatably connected to the box body (1); a fan component (3) is fixedly connected to the box body (1); a first vent (91) is provided on the box body (1); and a second vent (92) is provided on each of two narrow side surfaces of the box body (1); wherein: A plurality of electric push rods (4) are fixedly connected to the box body (1); the telescopic ends of all the electric push rods (4) are commonly fixedly connected to a square frame (5), and the square frame (5) is in contact with the inner wall of the box body (1); both ends of the square frame (5) are rotatably connected to a connecting block (6) via an electric rotating shaft; each connecting block (6) is fixedly connected to a wet curtain (7), and the wet curtain (7) is directly opposite to the corresponding vent (92); a plurality of wave portions (93) are provided on the wet curtain (7); and a plurality of channels (94) are formed between adjacent wave portions (93); a conveying assembly is connected to the box body (1), and the conveying assembly is used to convey water in the box body (1) to the upper part of the wet curtain (7).

2. The water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 1 is characterized in that: The conveying assembly comprises a pipe 1 (201), a pipe 2 (202) and a water pump (203); the pipe 1 (201) is fixedly connected to the box body (1), and the pipe 1 (201) is connected to the inside of the box body (1); the pipe 2 (202) is connected to the pipe 1 (201); the pipe 2 (202) is U-shaped, and both ends of the pipe 2 (202) are inserted into the inside of the box body (1) and are located above the corresponding wet curtain (7); both ends of the pipe 2 (202) are provided with a plurality of small holes; and the water pump (203) is installed on the pipe 1 (201).

3. A water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 2, characterized in that: It also includes a shielding component, which includes a second square frame (204) and a baffle (205); each of the two second vents (92) of the box body (1) is fixedly connected to a second square frame (204); each of the second square frames (204) is rotatably connected to a plurality of baffles (205) via an electric rotating shaft.

4. The water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 3 is characterized in that: It also includes a pipe three (206) and an extrusion unit; a plurality of pipes three (206) are provided on the box body (1); each pipe three (206) is provided with a plurality of small holes, and the small holes are aligned with the lower part of the corresponding wet curtain (7); the box body (1) is connected to the extrusion unit, and the extrusion unit is used to squeeze water in the box body (1) into the pipe three (206).

5. The water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 4 is characterized in that: The extrusion unit comprises a push plate (207), a box body (208) and a cover (209); the push plate (207) is fixedly connected to the lower side of the square frame (5); the upper part of the push plate (207) is cone-shaped; the box body (208) is fixedly connected to the lower inner side of the box body (1), and the box body (208) is located below the push plate (207); and the cover (209) is screwed to the bottom of the box body (208).

6. A water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 2 or 4, characterized in that: Filters are provided at the input ends of pipeline 1 (201) and pipeline 3 (206).

7. The water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 1 is characterized in that: It also includes a water absorbing block (2011); a plurality of inclined water absorbing blocks (2011) are fixedly connected to the wet curtain (7).

8. The water-cooled cabinet-type temperature-controlled energy-saving air cooler according to claim 7 is characterized in that: It also includes an air guide plate (2012); a plurality of air guide plates (2012) are rotatably connected to the box body (1) via an electric rotating shaft, and the air guide plates (2012) are located on the inner side of the ventilation opening 1 (91).

9. A water-cooled cabinet-type temperature-controlled energy-saving air cooler according to any one of claims 1 to 5, characterized in that: An intelligent adjustment module is provided on the box body (1), and the intelligent adjustment module is electrically connected to the fan component (3).

Citation Information

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