Dehumidifier using fire fighting water as refrigerant

By using low-temperature water from the fire water tank as a refrigerant, combined with an evaporator tube and evaporator fins, the problem of high energy consumption and electrical short circuits in traditional dehumidifiers has been solved, achieving low-energy dehumidification and safe equipment operation.

CN223663437UActive Publication Date: 2025-12-12ZHOUSHAN XINGGANG CITY SERVICE CO LTD
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Patent Information

Application Number
CN202422995549.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-12-12
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Traditional dehumidifiers consume a lot of electricity by using a compressor, which increases costs, and the dampness in the basement can lead to electrical short circuits.

Method used

Using low-temperature water from the fire water tank as a refrigerant, dehumidification is achieved through evaporation pipes and evaporation fins in conjunction with a fan and heating plate, reducing energy consumption and preventing electrical short circuits.

Benefits of technology

It achieves low-energy dehumidification, reduces power consumption, prevents electrical short circuits, and ensures the normal operation of computer room equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dehumidifier using fire fighting water as a refrigerant, and relates to the technical field of dehumidification devices. The basement comprises a basement frame and a fire pool, low-temperature water is stored in the fire pool; the basement frame comprises a rectangular outer frame and an H-shaped partition plate fixed to the inner wall of the rectangular outer frame. The H-shaped partition plates divide an inner cavity of the rectangular outer frame into a ventilation cavity, a dehumidification cavity, a heating cavity and a working cavity. An evaporation pipe is arranged between two opposite inner walls of the dehumidification cavity; a plurality of evaporation fins are uniformly fixed on the peripheral side surface of the evaporation pipe; and two ends of the evaporation pipe are communicated with low-temperature water in the fire pool. Low-temperature water in the fire pool is used for circulation, the evaporation pipe and the evaporation fins are matched for dehumidification treatment, and compared with a traditional dehumidifier which uses a compressor to do work to generate a large amount of electric energy consumption, the dehumidification effect is achieved, and consumption of electric energy is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to dehumidification device technical field, especially, it is related to a kind of dehumidifier using fire-fighting water as refrigerant. BACKGROUND

[0002] At present, building water pump house is generally set in basement, due to poor ventilation effect of basement, especially in plum rain season, perennial in humid stage, easy to cause electrical short circuit, affect machine room equipment normal operation, even cause security risk.

[0003] At present, in order to reduce the humidity of basement, dehumidifier is usually used to dehumidify air, and the dehumidifier is an electric appliance capable of reducing humidity in air, and its working principle is mainly to absorb moisture in air, convert it into liquid water and discharge it outside the machine, so as to achieve the purpose of reducing air humidity. However, the traditional dehumidifier needs to use compressor to work to achieve the effect of dehumidification, which will generate a large amount of electric energy consumption, increasing the cost.

[0004] Therefore, we provide a kind of dehumidifier using fire-fighting water as refrigerant to solve the problems in the above. INVENTION CONTENTS

[0005] The utility model aims at providing a kind of dehumidifier using fire-fighting water as refrigerant, by using low-temperature water in fire-fighting pool to circulate, cooperate with evaporative tube and evaporative fin to carry out dehumidification treatment, reduce the consumption of electric energy, solve the problem of a large amount of electric energy consumption generated by the existing traditional dehumidifier using compressor to work.

[0006] To solve the above technical problems, the utility model is realized by the following technical schemes:

[0007] The utility model is a kind of dehumidifier using fire-fighting water as refrigerant, including basement frame and fire-fighting pool;Low-temperature water is stored in the fire-fighting pool;The basement frame includes rectangular outer frame and H-shaped partition plate fixed in the inner wall of rectangular outer frame;The H-shaped partition plate divides the rectangular outer frame inner cavity into ventilation cavity, dehumidification cavity, heating cavity and working cavity;The ventilation cavity, dehumidification cavity, heating cavity and working cavity are sequentially communicated with each other;Air can flow freely in the ventilation cavity, dehumidification cavity, heating cavity and working cavity;Evaporative tube is arranged between the two opposite inner walls of dehumidification cavity;The evaporative tube is uniformly fixed with a plurality of evaporative fins on the peripheral side;The two ends of the evaporative tube are communicated with low-temperature water in fire-fighting pool.

[0008] The utility model is further provided: a plurality of air inlet holes and air outlet holes are uniformly and vertically provided on the H-shaped partition plate;The air inlet hole is communicated with ventilation cavity and dehumidification cavity;The air outlet hole is communicated with dehumidification cavity and heating cavity.

[0009] The utility model further sets up: the H shape partition board is provided with air inlet groove and air outlet groove, the air inlet groove is connected with the heating cavity and the working cavity, the air outlet groove is connected with the working cavity and the ventilation cavity, the fan is rotatably arranged on the inner wall of the air outlet groove, and the mica sheet heating plate is fixed on the inner top surface of the heating cavity.

[0010] The utility model further sets up: the connecting pipe is fixed between the inner wall of the ventilation cavity and the inner wall of the heating cavity, the flange is fixed on the two ends of the connecting pipe and the two ends of the evaporation pipe, the flange pad is fixed on the flange, and the two ends of the evaporation pipe are sealedly connected with the connecting pipe through the flange.

[0011] The utility model further sets up: the H shape partition board is provided with air inlet groove and air outlet groove, the air inlet groove is connected with the heating cavity and the working cavity, the air outlet groove is connected with the working cavity and the ventilation cavity, the fan is rotatably arranged on the inner wall of the air outlet groove, and the mica sheet heating plate is fixed on the inner top surface of the heating cavity.

[0012] The utility model further sets up: the H shape partition board is provided with air inlet groove and air outlet groove, the air inlet groove is connected with the heating cavity and the working cavity, the air outlet groove is connected with the working cavity and the ventilation cavity, the fan is rotatably arranged on the inner wall of the air outlet groove, and the mica sheet heating plate is fixed on the inner top surface of the heating cavity.

[0013] The utility model further sets up: the H shape partition board is provided with air inlet groove and air outlet groove, the air inlet groove is connected with the heating cavity and the working cavity, the air outlet groove is connected with the working cavity and the ventilation cavity, the fan is rotatably arranged on the inner wall of the air outlet groove, and the mica sheet heating plate is fixed on the inner top surface of the heating cavity.

[0014] The utility model further sets up: the H shape partition board is provided with air inlet groove and air outlet groove, the air inlet groove is connected with the heating cavity and the working cavity, the air outlet groove is connected with the working cavity and the ventilation cavity, the fan is rotatably arranged on the inner wall of the air outlet groove, and the mica sheet heating plate is fixed on the inner top surface of the heating cavity.

[0015] The utility model has the advantages of:

[0016] 1、 the utility model utilizes the low temperature water in the fire pool to circulate, cooperates evaporation pipe and evaporation fin to carry out dehumidification treatment, compared with the traditional dehumidifier utilizes the compressor to work to produce a large amount of electric energy consumption, plays the effect of dehumidification, reduces the consumption of electric energy.

[0017] 2、 the utility model circulates the air in ventilation cavity, dehumidification cavity, heating cavity and working cavity through the fan, makes the humid air in the working cavity can always enter the dehumidification cavity and carry out dehumidification treatment, prevents electrical short circuit, influences the normal operation of the equipment room.

[0018] Of course, any product implementing the utility model does not necessarily need to achieve all the advantages described above. ACCURATE DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed for the description of the embodiments will be briefly introduced as follows. Obviously, the drawings described below are only some of the embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.

[0020] Figure 1 It is a structural schematic view of a dehumidifier using fire-fighting water as refrigerant.

[0021] Figure 2 It is a structural schematic view of a basement frame of the present application.

[0022] Figure 3 It is a structural schematic view of the basement frame of the present application. Figure 2 It is another perspective structural schematic view of the basement frame.

[0023] Figure 4 It is a structural schematic view of an evaporation pipe of the present application.

[0024] Figure 5 It is a sectional view of a cover plate of the present application.

[0025] In the drawings, the component list represented by each reference numeral is as follows:

[0026] 1-basement frame, 2-fire-fighting water pool, 3-low-temperature water, 4-rectangular outer frame, 5-H-shaped partition plate, 6-ventilation cavity, 7-dehumidification cavity, 8-heating cavity, 9-working cavity, 10-evaporation pipe, 11-evaporation fin, 12-air inlet hole, 13-air outlet hole, 14-air inlet groove, 15-air outlet groove, 16-fan, 17-mica sheet heating plate, 18-connection pipe, 19-flange, 20-flange gasket, 21-sinking groove, 22-reinforcing plate, 23-cover plate, 24- placement groove, 25-adsorption cotton, 26-adsorption plate, 27-adsorption hole, 28-water pump, 29-water pipe, 30-temperature sensor, 31-humidity sensor, 32-controller. DETAILED DESCRIPTION

[0027] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] Specific embodiment one, please refer to Figures 1-5The utility model discloses a utilize fire water as refrigerant's dehumidifier, including basement frame 1 and fire water pool 2, the inside storage of fire water pool 2 has low temperature water 3, the basement frame 1 includes rectangular outer frame 4 and the H-shaped partition 5 of fixed in the inner wall of rectangular outer frame 4, the H-shaped partition 5 will the inner chamber of rectangular outer frame 4 divide into ventilation cavity 6, dehumidification chamber 7, heating chamber 8 and working cavity 9, ventilation cavity 6, dehumidification chamber 7, heating chamber 8 and working cavity 9 are communicated with each other in turn, the air can flow freely in ventilation cavity 6, dehumidification chamber 7, heating chamber 8 and working cavity 9, be provided with evaporation pipe 10 between the two opposite inner walls of dehumidification chamber 7, the even fixed with a plurality of evaporation fins 11 of evaporation pipe 10 periphery, the both ends of evaporation pipe 10 are linked with low temperature water 3 in fire water pool 2.

[0029] Specifically, a plurality of air inlet holes 12 and air outlet holes 13 are evenly provided on the H-shaped partition 5, the air inlet holes 12 are communicated between the ventilation cavity 6 and the dehumidification chamber 7, and the air outlet holes 13 are communicated between the dehumidification chamber 7 and the heating chamber 8.

[0030] Further, the connecting pipes 18 are fixedly arranged between the inner walls of the ventilation cavity 6 and the heating chamber 8, the flanges 19 are fixedly arranged on the two ends of the connecting pipes 18 and the two ends of the evaporation pipe 10, the flange pads 20 are fixedly arranged on the flanges 19, and the two ends of the evaporation pipe 10 are sealingly connected with the connecting pipes 18 through the flanges 19.

[0031] Further, the water pump 28 is arranged in the fire water pool 2, and the water pipes 29 are connected between the two connecting pipes 18 and the water outlet end of the water pump 28 and the fire water pool 2.

[0032] The operation process of the embodiment is as follows: first, the two ends of the evaporation pipe 10 are sealingly connected with the two connecting pipes 18 through the flanges 19, then the water pump 28 is turned on to supply water to the water pipes 29, the low-temperature water 3 in the fire water pool 2 flows into the connecting pipes 18 through the water pipes 29, and then flows into the other connecting pipe 18 along the evaporation pipe 10, and finally flows back to the fire water pool 2 through the other water pipe 29, forming a closed loop.

[0033] The evaporation pipe 10 and the evaporation fins 11 dehumidify in the dehumidification chamber 7, the dehumidified air in the dehumidification chamber 7 enters the heating chamber 8 through the air outlet holes 13, the air in the heating chamber 8 is heated and enters the working cavity 9, the humid air in the working cavity 9 enters the ventilation cavity 6 and then enters the dehumidification chamber 7 through the air inlet holes 12 for dehumidification, and the process is repeated, so that the humid air in the working cavity 9 can be dehumidified at all times, preventing electrical short circuit and affecting the normal operation of the equipment room.

[0034] Specific embodiment two, please refer to Figures 1-5On the basis of the first embodiment, the H-shaped partition plate 5 is provided with an air inlet groove 14 and an air outlet groove 15; the air inlet groove 14 connects the heating cavity 8 and the working cavity 9; the air outlet groove 15 connects the working cavity 9 and the air exchange cavity 6; the air outlet groove 15 is provided with a fan 16 rotatably arranged on the inner wall; and the heating cavity 8 is fixed with a mica sheet heating plate 17 on the inner top surface.

[0035] Specifically, the working cavity 9 is fixed with a temperature sensor 30 and a humidity sensor 31 on the inner top surface; the working cavity 9 is fixed with a controller 32 on the inner wall; the controller 32 is electrically connected with the temperature sensor 30 and the humidity sensor 31 at the input end, and is electrically connected with the evaporation fin 11, the fan 16 and the mica sheet heating plate 17 at the output end.

[0036] The operation process of the embodiment is as follows: the evaporation fin 11 and the evaporation pipe 10 perform dehumidification in the dehumidification cavity 7, and the temperature sensor 30 and the humidity sensor 31 respectively monitor the air temperature and the air humidity inside the working cavity 9 in real time.

[0037] When the air humidity is too high, the humidity sensor 31 sends a signal to the controller 32, the controller 32 opens the evaporation fin 11 and the fan 16, the fan 16 sucks the humid air in the working cavity 9 into the air exchange cavity 6 through the air outlet groove 15, and then into the dehumidification cavity 7 through the air inlet hole 12, the evaporation fin 11 and the evaporation pipe 10 perform dehumidification together, the dehumidified air enters the heating cavity 8 through the air outlet hole 13, and then enters the working cavity 9 through the air inlet groove 14, and the humid air in the working cavity 9 is dehumidified by air exchange, so that the humid air in the working cavity 9 can be dehumidified at all times, preventing electrical short circuit and affecting the normal operation of the equipment room.

[0038] When the air temperature is too low, the temperature sensor 30 sends a signal to the controller 32, the controller 32 opens the mica sheet heating plate 17, so that the dehumidified air is heated and warmed by the mica sheet heating plate 17 after entering the heating cavity 8, thereby reducing the relative humidity while maintaining the indoor temperature stable.

[0039] The third embodiment is described in detail with reference to the first embodiment and the second embodiment. Figures 1-5 On the basis of the first embodiment and the second embodiment, the H-shaped partition plate 5 is provided with a sunken groove 21; a plurality of reinforcing plates 22 are fixedly and uniformly connected between the two opposite inner walls of the sunken groove 21; and a cover plate 23 is rotatably arranged on the inner wall of the sunken groove 21.

[0040] Specifically, the bottom surface of the cover plate 23 is provided with a placing groove 24; a plurality of adsorption cottons 25 are placed in the placing groove 24; the bottom surface of the cover plate 23 is fixed with an adsorption plate 26 through fastening bolts; a plurality of adsorption holes 27 are penetrated through the bottom surface of the adsorption plate 26; the adsorption holes 27 are communicated with the inside of the dehumidification cavity 7.

[0041] The operation process of the embodiment is as follows: when the evaporation pipe 10 is installed, the cover plate 23 on the sunken groove 21 is opened, then the evaporation pipe 10 is put into the dehumidification cavity 7 together with the evaporation fins 11, then the reinforcing plates 22 are fixed between the inner walls of the sunken groove 21 through fastening bolts, then the adsorption cottons 25 are put into the placing grooves 24, then the adsorption plate 26 is fixed on the bottom surface of the cover plate 23 through fastening bolts, and the moisture in the humid air can be adsorbed on the adsorption cottons 25 through the adsorption holes 27, and the adsorption cottons 25 can be replaced regularly.

[0042] In the description of the present specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are contained in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0043] The preferred embodiments of the present application disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details, nor limit the present application to the specific embodiments described. Obviously, according to the content of the present specification, many modifications and changes can be made. The present specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present application, so that the persons skilled in the art can well understand and utilize the present application. The present application is limited by the claims and the entire scope and equivalents thereof.

Claims

1. A dehumidifier using fire water as refrigerant, comprising a basement frame (1) and a fire water pool (2); the fire water pool (2) stores low-temperature water (3) inside; characterized in that: the basement frame (1) comprises a rectangular outer frame (4) and an H-shaped partition plate (5) fixed to the inner wall of the rectangular outer frame (4); the H-shaped partition plate (5) divides the inner cavity of the rectangular outer frame (4) into an air exchange cavity (6), a dehumidification cavity (7), a heating cavity (8) and a working cavity (9); the air exchange cavity (6), the dehumidification cavity (7), the heating cavity (8) and the working cavity (9) are sequentially and mutually communicated; air can flow freely inside the air exchange cavity (6), the dehumidification cavity (7), the heating cavity (8) and the working cavity (9); the dehumidification cavity (7) is provided with an evaporation pipe (10) between the two opposite inner walls; the evaporation pipe (10) is uniformly fixed with a plurality of evaporation fins (11) on the side surface; the two ends of the evaporation pipe (10) are communicated with the low-temperature water (3) in the fire water pool (2).

2. The dehumidifier using fire-fighting water as a refrigerant according to claim 1, characterized by a plurality of air inlet holes (12) and air outlet holes (13) are uniformly and penetratively provided on the H-shaped partition plate (5); the air inlet holes (12) communicate the air exchange cavity (6) with the dehumidification cavity (7); the air outlet holes (13) communicate the dehumidification cavity (7) with the heating cavity (8).

3. The dehumidifier using fire-fighting water as a refrigerant according to claim 2, characterized by the H-shaped partition plate (5) is provided with an air inlet groove (14) and an air outlet groove (15); the air inlet groove (14) communicates the heating cavity (8) with the working cavity (9); the air outlet groove (15) communicates the working cavity (9) with the air exchange cavity (6); a fan (16) is rotatably arranged on the inner wall of the air outlet groove (15); a mica sheet heating plate (17) is fixed to the inner top surface of the heating cavity (8).

4. The dehumidifier using fire-fighting water as a refrigerant according to claim 3, characterized by a connecting pipe (18) is fixedly and penetratively arranged between the inner walls of the air exchange cavity (6) and the heating cavity (8); flanges (19) are fixed to the two ends of the connecting pipe (18) and the two ends of the evaporation pipe (10); flange pads (20) are fixed to the flanges (19); the two ends of the evaporation pipe (10) are sealingly connected with the connecting pipe (18) through the flanges (19).

5. The dehumidifier using fire-fighting water as a refrigerant according to claim 3, characterized by a sinking groove (21) is penetratively provided on the surface of the H-shaped partition plate (5); a plurality of reinforcing plates (22) are uniformly and fixedly arranged between the two opposite inner walls of the sinking groove (21); a cover plate (23) is rotatably arranged on the inner wall of the sinking groove (21); the cover plate (23) is sealingly arranged between the inner walls of the sinking groove (21).

6. The dehumidifier using fire-fighting water as a refrigerant according to claim 5, wherein a placing groove (24) is provided on the bottom surface of the cover plate (23); a plurality of adsorption cottons (25) are placed inside the placing groove (24); an adsorption plate (26) is fixed to the bottom surface of the cover plate (23) through fastening bolts; a plurality of adsorption holes (27) are penetratively provided on the bottom surface of the adsorption plate (26); the adsorption holes (27) are communicated with the inside of the dehumidification cavity (7).

7. The dehumidifier using fire-fighting water as a refrigerant according to claim 4, wherein a water pump (28) is arranged inside the fire water pool (2); water pipes (29) are connected between the two connecting pipes (18), the water outlet end of the water pump (28) and the fire water pool (2).

8. The dehumidifier using fire-fighting water as a refrigerant according to claim 2, characterized by The temperature sensor (30) and the humidity sensor (31) are fixed to the inner top surface of the working cavity (9); the controller (32) is fixed to the inner wall of the working cavity (9); the input end of the controller (32) is electrically connected with the temperature sensor (30) and the humidity sensor (31), and the output end of the controller (32) is electrically connected with the evaporation fin (11), the fan (16) and the mica sheet heating plate (17).