Modularized rapidly-assembled pure water cooling device

By using a modularly designed pure water cooling device that utilizes spiral cooling pipes to contact and cool the air, the problem of pure water evaporation loss is solved, achieving a highly efficient and stable pure water cooling effect.

CN223815003UActive Publication Date: 2026-01-20GUANGDONG CHANGYU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202520428299.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-20
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

The existing pure water cooling system results in pure water evaporation loss, requiring regular replenishment of fresh water to maintain the system's water balance.

Method used

Design a modular, rapidly assembled pure water cooling device. It uses components such as a spiral cooling pipe, sealing ring, venting cylinder, and copper drain pan. The device cools the water by contacting cold air through the spiral cooling pipe, avoiding pure water evaporation loss, and collecting pure water when the spiral cooling pipe ruptures.

Benefits of technology

It achieves zero evaporation loss during pure water cooling, improves cooling efficiency and system water volume stability, and avoids losses caused by pure water leakage and breakage.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of pure water cooling, in particular to a modularized quickly-assembled pure water cooling device. The utility model provides a modularized quickly-assembled pure water cooling device which does not cause evaporation loss of pure water. A modularized rapidly-assembled pure water cooling device comprises an outer cylinder, a supporting frame, an air inlet, an air outlet, an upper cover, a water inlet pipe and the like, the outer cylinder is connected to the upper portion of the supporting frame, the air inlet is connected to the left side of the lower portion of the outer cylinder, the air outlet is connected to the right side of the upper portion of the outer cylinder, the upper cover is clamped to the upper side of the outer cylinder, and the water inlet pipe is connected to the left portion of the upper cover. When pure water needs to be cooled, firstly, the spiral cooling pipe with the proper pipe diameter can be selected according to the cooling efficiency requirement, then the spiral cooling pipe is fixed to the upper cover through the first fixing piece, meanwhile, the two ends of the spiral cooling pipe are communicated with the water inlet pipe and the water outlet pipe respectively, and the sealing ring can prevent the pure water from leaking; further, the pure water loss is caused.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of pure water cooling, especially a modularization quick assembly pure water cooling device. BACKGROUND

[0002] Pure water becomes ideal cooling medium because of its good heat conduction performance, so pure water is often used as coolant in cooling system to absorb and transfer heat through circulating flow to maintain the suitable temperature of target equipment or environment. But pure water needs to be cooled after heat exchange, and the current pure water cooling is through pure water cooling tower, mainly through pumping hot water to the top of the cooling tower, then uniformly distributing on the filling material through the nozzle to form fine water droplets or thin water film. Then make air counterflow or crossflow through the filler layer through natural ventilation or mechanical ventilation to contact with hot water, part of hot water evaporates into water vapor into the atmosphere, taking away a large amount of latent heat, so that the remaining water temperature is reduced, and the cooled water flows into the bottom of the water collecting pool, and is pumped back to the equipment needing cooling for continuous circulation. But this method will cause pure water loss due to evaporation, so fresh water source needs to be supplemented regularly to maintain the water balance of the system. Such operation is more troublesome.

[0003] Therefore, it is necessary to design a modularization quick assembly pure water cooling device which will not cause pure water evaporation loss. SUMMARY

[0004] In order to overcome the shortcomings that the prior art will cause pure water loss due to evaporation, so fresh water source needs to be supplemented regularly to maintain the water balance of the system, the technical problem of the utility model is to provide a modularization quick assembly pure water cooling device which will not cause pure water evaporation loss.

[0005] The technical implementation scheme of the utility model is: a modularization quick assembly pure water cooling device, comprising an outer cylinder, a support frame, an air inlet, an air outlet, an upper cover, a water inlet pipe, a water outlet pipe, a spiral cooling pipe and a first fixing piece, the upper part of the support frame is connected with the outer cylinder, the lower left side of the outer cylinder is connected with the air inlet, the upper right side of the outer cylinder is connected with the air outlet, the upper side of the outer cylinder is clamped with the upper cover, the left part of the upper cover is connected with the water inlet pipe, the middle part of the upper cover is connected with the water outlet pipe, the lower side of the upper cover is connected with the spiral cooling pipe through the first fixing piece, and the two ends of the spiral cooling pipe are communicated with the water inlet pipe and the water outlet pipe respectively.

[0006] As a further preferred scheme, a sealing ring is further included, and the two ends of the spiral cooling pipe are connected with the sealing ring at the connection with the upper cover.

[0007] As a further preferred scheme, a ventilation cylinder is further included, and the ventilation cylinder is placed in the inner part of the outer cylinder.

[0008] As a further preferred, still including the clamping post, the upper inner side of the outer cylinder is connected with the clamping post, and the clamping post is in contact with the air cylinder.

[0009] As a further preferred, still including the lower cover and the second fixing part, the bottom of the outer cylinder is connected with the lower cover through the second fixing part.

[0010] As a further preferred, still including the copper drain tray and the drain port, the upper middle part of the lower cover is connected with the copper drain tray, the copper drain tray is located at the lower side of the spiral cooling pipe, and the lower side of the copper drain tray is connected with the drain port through a valve.

[0011] Compared with the prior art, the utility model has the advantages that: 1, the utility model in need of cooling pure water, first can pass through according to the cooling efficiency demand selection suitable pipe diameter size spiral cooling pipe, subsequently through the first fixed part fixed on the upper cover, simultaneously make the both ends of spiral cooling pipe respectively with the water inlet pipe and the water outlet pipe intercommunication, the sealing ring can avoid pure water leakage, and then lead to pure water loss.

[0012] 2, the utility model subsequently can put the air cylinder into the outer cylinder, and the clamping post can limit the air cylinder, so that the air cylinder position is moved at will, and then cold air can be introduced into the air cylinder inlet, the cold air will first gather in the lower part and then gradually move upwards, and then be discharged through the air outlet, so that the cold air can fully contact the spiral cooling pipe, thereby fully cooling the pure water, and effectively avoiding evaporation loss of the pure water during cooling, and after the cold air enters the outer cylinder, it will contact the air cylinder, so that the cold air can be dispersed, thereby uniformly cooling the pure water.

[0013] 3, the lower part of the spiral cooling pipe of the utility model can contact the copper drain tray, and the copper drain tray is made of copper, so that the lower part of the spiral cooling pipe is not cooled in place, and when the spiral cooling pipe is broken, the copper drain tray can collect pure water, and then discharge through the drain port, so that pure water loss caused by the damage of the spiral cooling pipe can be avoided. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the utility model.

[0015] Figure 2 It is a three-dimensional structure schematic view of the water outlet pipe and the spiral cooling pipe of the utility model.

[0016] Figure 3 It is a three-dimensional structure schematic view of the air cylinder and the clamping post of the utility model.

[0017] Figure 4 It is a three-dimensional structure schematic view of the lower cover and the copper drain tray of the utility model.

[0018] The meanings of the labels in the attached diagram are as follows: 1: Outer cylinder, 2: Support frame, 3: Air inlet, 4: Air outlet, 5: Top cover, 6: Water inlet pipe, 7: Water outlet pipe, 8: Spiral cooling pipe, 9: Sealing ring, 10: First fixing component, 11: Vent pipe, 12: Locking post, 13: Lower cover, 14: Copper drain pan, 15: Drain outlet, 16: Second fixing component. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will describe this utility model in further detail with reference to the accompanying drawings. It is hereby declared that the terms "up," "down," "left," "right," "front," "back," "inner," and "outer," etc., appearing or about to appear in this document, are based solely on the accompanying drawings and are not intended to specifically limit this utility model.

[0020] Example: A modular, rapidly assembled pure water cooling device, such as... Figures 1-4 As shown, the device includes an outer cylinder 1, a support frame 2, an air inlet 3, an air outlet 4, an upper cover 5, a water inlet pipe 6, a water outlet pipe 7, a spiral cooling pipe 8, a sealing ring 9, a first fixing component 10, a ventilator 11, a locking post 12, a lower cover 13, a copper drain pan 14, a drain outlet 15, and a second fixing component 16. The upper part of the support frame 2 is connected to the outer cylinder 1. The lower left side of the outer cylinder 1 is connected to the air inlet 3, and the upper right side of the outer cylinder 1 is connected to the air outlet 4. The upper side of the outer cylinder 1 is secured to the upper cover 5. The left side of the upper cover 5 is connected to the water inlet pipe 6, and the middle part of the upper cover 5 is connected to the water outlet pipe 7. The lower side of the upper cover 5 is connected to the first fixing component 10. The spiral cooling pipe 8 has its two ends connected to the water inlet pipe 6 and the water outlet pipe 7, respectively. Both ends of the spiral cooling pipe 8 are connected to the upper cover 5 with sealing rings 9. The venting cylinder 11 is placed inside the outer cylinder 1. The upper inner side of the outer cylinder 1 is connected to the locking post 12, which contacts the venting cylinder 11. The bottom of the outer cylinder 1 is connected to the lower cover 13 through the second fixing member 16. The upper middle part of the lower cover 13 is connected to the copper drain pan 14, which is located below the spiral cooling pipe 8. The lower side of the copper drain pan 14 is connected to the drain outlet 15 through a valve.

[0021] When the pure water needs to be cooled, first, the spiral cooling pipe 8 with a proper pipe diameter size according to the cooling efficiency requirement can be selected, then the first fixing part 10 is fixed on the upper cover 5, and the two ends of the spiral cooling pipe 8 are communicated with the water inlet pipe 6 and the water outlet pipe 7 respectively, the sealing ring 9 can avoid the pure water leakage, and then the air cylinder 11 is put into the outer cylinder 1, the clamping column 12 can limit the air cylinder 11, so that the air cylinder 11 is not moved randomly, then the cold air is introduced into the air inlet 3 of the air cylinder 11, the cold air is first gathered at the lower part and then gradually moves upward, and then is discharged through the air outlet 4, so that the cold air can fully contact with the spiral cooling pipe 8, and the pure water can be fully cooled, and the evaporation loss of the pure water during the cooling process can be effectively avoided, and after the cold air enters the outer cylinder 1, the cold air contacts with the air cylinder 11, so that the cold air can be dispersed, so that the cold air uniformly cools the pure water; the lower part of the spiral cooling pipe 8 can contact with the copper drain pan 14, the copper drain pan 14 is copper, so that the lower part of the spiral cooling pipe 8 is not cooled in place, and when the spiral cooling pipe 8 is broken, the copper drain pan 14 can collect the pure water, and then the pure water is discharged through the drain port 15, so that the pure water loss caused by the damage of the spiral cooling pipe 8 can be avoided.

[0022] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that changes can be made in these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A modular, quick-assembly, pure water cooling device, characterized by: The utility model relates to a spiral cooling pipe cooling device, including outer tube (1), support frame (2), gas inlet (3), gas outlet (4), upper cover (5), water inlet pipe (6), water outlet pipe (7), spiral cooling pipe (8) and first fixed part (10), the upper portion of support frame (2) is connected with outer tube (1), the lower left side of outer tube (1) is connected with gas inlet (3), the upper right side of outer tube (1) is connected with gas outlet (4), the upper side of outer tube (1) is connected with upper cover (5), the left portion of upper cover (5) is connected with water inlet pipe (6), the middle portion of upper cover (5) is connected with water outlet pipe (7), the lower side of upper cover (5) is connected with spiral cooling pipe (8) through first fixed part (10), and both ends of spiral cooling pipe (8) are communicated with water inlet pipe (6) and water outlet pipe (7) respectively.

2. A modular, quick assembly, pure water cooling device as claimed in claim 1, characterized in that, Still including sealing ring (9), both ends of spiral cooling pipe (8) are connected with sealing ring (9) at the connection with upper cover (5).

3. A modular, quick assembly, pure water cooling device as claimed in claim 2, characterized in that, Still including air cylinder (11), air cylinder (11) is placed in the inside of outer tube (1).

4. A modular, quick assembly, pure water cooling device as claimed in claim 3, characterized in that, Still including clamping post (12), the inner side of the upper portion of outer tube (1) is connected with clamping post (12), and clamping post (12) is in contact with air cylinder (11).

5. A modular, quick assembly, pure water cooling device as claimed in claim 4, characterized in that, Still including lower cover (13) and second fixed part (16), the bottom of outer tube (1) is connected with lower cover (13) through second fixed part (16).

6. A modular, quick assembly, pure water cooling device as claimed in claim 5, characterized in that, Still including copper drain tray (14) and drain port (15), the upper side of the middle portion of lower cover (13) is connected with copper drain tray (14), copper drain tray (14) is located at the lower side of spiral cooling pipe (8), and the lower side of copper drain tray (14) is connected with drain port (15) through valve.