High-energy-efficiency high-temperature-resistant cooling water type air conditioning device
By integrating the radiator, compressor and water cooling mechanism into the air-conditioning device, the problems of large space occupied by air-conditioning equipment and air cooling being affected by the environment are solved, and an efficient and silent water cooling effect is achieved, thereby improving the overall performance of the air-conditioning.
Patent Information
- Application Number
- CN202511252991.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2025-10-17
- Estimated Expiration
- Not applicable · inactive patent
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Figure CN120799554A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of air conditioning technology, and in particular to a high energy efficiency and high temperature resistant cooling water type air conditioning device. BACKGROUND
[0002] Air conditioner refers to the device for artificially adjusting and controlling the parameters such as temperature, humidity and flow rate of air in the environment of a building or structure. The air conditioner usually includes an outdoor unit and an indoor unit. The outdoor unit needs to be installed outdoors for heat exchange. For high-rise buildings, the installation and maintenance of the outdoor unit are difficult, and there is a great safety hazard, which is prone to falling.
[0003] At present, the air conditioner is composed of two parts, which cannot be installed integrally in the interior of the cabinet machine. The equipment occupies a large area, causing the problem of additional space for installing the outdoor unit, further reducing the production cost of the air conditioner. In addition, through air cooling, the traditional air cooling is easily affected by environmental factors, and the cooling effect is poor and there is a large noise problem, further reducing the working performance of the air conditioner. SUMMARY
[0004] The purpose of the present application is to solve the problem that the prior art cannot be installed integrally in the interior of the cabinet machine, and a high energy efficiency and high temperature resistant cooling water type air conditioning device is provided.
[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme: A high energy efficiency and high temperature resistant cooling water type air conditioning device, comprising a cabinet machine, and an air outlet and an air inlet respectively formed on the surface of the cabinet machine, further comprising: a first chamber and a second chamber are formed on the inner wall of the cabinet machine by a partition plate, a shaft flow fan is rotatably connected to the inside of the first chamber through a driving part; an air conditioning mechanism is arranged in the interior of the cabinet machine, wherein the air conditioning mechanism comprises a radiator installed in the interior of the first chamber, one end of the radiator is connected with a compressor, the compressor is located on the inner bottom wall of the second chamber, one end of the compressor is fixedly connected with a condenser, one end of the condenser is fixedly connected with an expansion valve, and the other end of the expansion valve is fixedly connected with the radiator; a water cooling mechanism is arranged on the inner bottom wall of the second chamber and covers the surface of the condenser.
[0006] Preferably, the water cooling mechanism comprises a water cooling box fixed on the inner bottom wall of the second chamber, the water cooling box is provided with an inlet pipe and an outlet pipe on both sides, and the condenser is located on the inner wall of the water cooling box.
[0007] Preferably, the end of the inlet pipe is fixedly connected with a spiral pipe, the spiral pipe is wound on the surface of the compressor, the end of the spiral pipe is fixed on the side wall of the water cooling box, and the surface of the inlet pipe is fixedly provided with an electromagnetic valve.
[0008] Preferably, the end of the water outlet pipe is fixedly connected with a circulating pipe, the circulating pipe is fixedly connected with the side wall of the water cooling box, and the connecting position of the circulating pipe and the water outlet pipe is provided with an electromagnetic three-way valve.
[0009] Preferably, the side wall of the water cooling box is fixedly connected with a gas releasing mechanism, the gas releasing mechanism comprises a gas releasing pipe fixed to the side wall of the water cooling box, a sliding plate is slidably connected in the gas releasing pipe, a touch switch is fixedly connected in the gas releasing pipe, a touch rod is fixedly connected to the surface of the sliding plate, and the touch rod is in the same horizontal line with the touch switch.
[0010] Preferably, the bottom of the gas releasing pipe is provided with a gas releasing hole.
[0011] Preferably, a reset spring is fixedly connected in the gas releasing pipe, and the end of the reset spring is fixedly connected to the sliding plate.
[0012] Preferably, a transmission shaft is rotatably connected in the circulating pipe through a support, one end of the transmission shaft is fixedly connected with a turbine, the turbine is located in the circulating pipe, the end of the axial flow fan is fixedly connected with a stirring rod, and the end of the stirring rod is used to drive the transmission shaft to rotate.
[0013] Preferably, the end of the stirring rod is fixedly connected with a conical gear one, the surface of the conical gear one is meshingly connected with a conical gear two, the conical gear two is fixed to the end of the transmission shaft, the surfaces of the conical gear one and the conical gear two are covered with a protective shell, and the transmission shaft and the stirring rod are rotatable in the inner wall of the protective shell through a bearing.
[0014] Compared with the prior art, the present application provides a high-energy-efficiency high-temperature-resistant cooling water type air conditioning device, which has the following beneficial effects: 1. The high-energy-efficiency high-temperature-resistant cooling water type air conditioning device can be integrally installed in the interior of a cabinet machine through the arrangement of the radiator, the compressor, the condenser and the expansion valve, thereby greatly reducing the equipment floor area and avoiding the problem of additional space required for installing an outdoor unit, and further reducing the production cost of the air conditioner.
[0015] 2. The high-energy-efficiency high-temperature-resistant cooling water type air conditioning device can perform water cooling treatment through the cooperation between the water cooling box, the water inlet pipe, the spiral pipe and the water outlet pipe, thereby avoiding the problems of poor cooling effect and large noise caused by the influence of environmental factors in traditional air cooling, and further improving the working performance of the air conditioner.
[0016] 3. The high-efficiency high-temperature-resistant cooling water type air conditioning device, through the setting of the sliding plate inside the air release pipe, can realize monitoring the change value of the internal water temperature, when the water temperature exceeds the rated value, the electromagnetic valve can be automatically triggered to work, so as to automatically heat exchange the internal cooling water, further ensuring the energy saving and environmental protection of the air conditioner.
[0017] The parts not involved in the device are the same as or can be realized by the prior art, the present application can greatly reduce the equipment floor area, avoid the problem of additional space required for installing outdoor unit, can be processed by water cooling, avoid the problem of poor cooling effect and large noise caused by traditional air cooling under the influence of environmental factors, further improve the working performance of the air conditioner. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 A structure diagram of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 2 A structure diagram of an air conditioning mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 3 A structure diagram of a water cooling mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 4 A connection structure diagram of an axial flow fan and a water cooling mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 5 A structure diagram of a water cooling mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 6 A structure diagram of a water cooling mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 7 A structure diagram of a water cooling mechanism of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 5 An enlarged structure diagram of A in the above figure is provided for the present application; Figure 8 A structure diagram of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application; Figure 9 A structure diagram of a high-efficiency high-temperature-resistant cooling water type air conditioning device is provided for the present application;
[0019] In the figure: 1, cabinet machine; 11, air outlet; 12, air inlet; 13, first chamber; 14, axial flow fan; 15, second chamber; 2, air conditioning mechanism; 21, radiator; 22, compressor; 23, condenser; 24, expansion valve; 25, collection box; 26, discharge pipe; 3, water cooling mechanism; 31, water cooling box; 32, water inlet pipe; 321, spiral pipe; 33, water outlet pipe; 331, circulating pipe; 332, transmission shaft; 333, turbine; 334, stirring rod; 3341, bevel gear one; 3342, bevel gear two; 3343, protective shell; 4, air release mechanism; 41, air release pipe; 42, sliding plate; 43, touch switch; 44, touch rod; 45, air release hole; 46, return spring. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.
[0021] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0022] In one embodiment, with reference to Figures 1-9 A high-energy-efficiency high-temperature-resistant cooling water type air conditioning device, comprising a cabinet machine 1, and an air outlet 11 and an air inlet 12 respectively arranged on the surface of the cabinet machine 1, further comprising: a first chamber 13 and a second chamber 15 formed on the inner wall of the cabinet machine 1 by a partition plate, an axial flow fan 14 rotatably connected to the inside of the first chamber 13 by a driving part; an air conditioning mechanism 2 arranged in the inside of the cabinet machine 1, wherein the air conditioning mechanism 2 comprises a radiator 21 arranged in the inside of the first chamber 13, one end of the radiator 21 is connected with a compressor 22, the compressor 22 is located on the inner bottom wall of the second chamber 15, one end of the compressor 22 is fixedly connected with a condenser 23, one end of the condenser 23 is fixedly connected with an expansion valve 24, the expansion valve 24 is fixedly connected with the other end of the radiator 21; a water cooling mechanism 3 arranged on the inner bottom wall of the second chamber 15, used to cover the surface of the condenser 23, the end of the radiator 21 is provided with a collection box 25, the bottom of the collection box 25 is fixedly connected with a discharge pipe 26, the discharge pipe 26 is fixedly connected with the side wall of a water cooling box 31.
[0023] With such a scheme, through the arrangement of the heat radiator 21, the compressor 22, the condenser 23 and the expansion valve 24, the air conditioner can be integrally installed in the interior of the cabinet 1. Through such arrangement, the equipment floor space can be greatly reduced, the problem of additional space for installing the outdoor unit can be avoided, and the production cost of the air conditioner can be further reduced.
[0024] In particular, during operation, the air conditioner mechanism 2 and the water cooling mechanism 3 can be installed in the first chamber 13 and the second chamber 15 of the cabinet 1 respectively. Then, when the axial flow fan 14 is driven, the air flow in the air inlet 12 can be introduced into the interior of the cabinet 1, and then discharged through the air outlet 11. Since the heat radiator 21 is located in the interior of the first chamber 13, when the axial flow fan 14 discharges air, the air can pass through the heat radiator 21 and be discharged. Through the heat radiator 21, the air can be converted into cold air and discharged, so as to rapidly cool the interior of the cabinet 1. Through the driving of the compressor 22, the refrigerant in the heat radiator 21 can be transported into the condenser 23. Through the condenser 23, the refrigerant can be heat exchanged. Finally, through the expansion valve 24, the high-temperature and high-pressure liquid refrigerant can be converted into low-temperature and low-pressure wet steam and transported into the heat radiator 21. Then, through the same method, the interior can be continuously cooled. Through the arrangement of the collection box 25 at the bottom of the heat radiator 21, the condensed water generated by the heat radiator 21 can be collected and transported into the water cooling mechanism 3 through the discharge pipe 26, so as to heat exchange the condenser 23 in the water cooling mechanism 3.
[0025] In addition, the heat radiator 21, the compressor 22 and the condenser 23 can all be made of metal pipes. The metal pipes can be made of copper pipes, which have heat conduction and high-temperature resistance, so as to prolong the service life of the heat radiator 21, the compressor 22 and the condenser 23.
[0026] It is to be further understood that the air outlet 11 is provided with a louver, the air inlet 12 is provided with a filter plate, and the sidewall of the cabinet 1 is provided with a maintenance shell. The driving part connected to the axial flow fan 14 is a servo motor.
[0027] In one embodiment, referring to Figure 3 and Figure 4The utility model relates to a kind of high energy efficiency high-temperature-resistant cooling water type air conditioning device, including cabinet 1, and respectively opening air outlet 11 and air inlet 12 in the surface of cabinet 1, further including: first chamber 13 and second chamber 15 are formed with the inner wall of cabinet 1 by partition respectively, the inside of first chamber 13 is rotatably connected with axial fan 14 by drive part;Air conditioning mechanism 2 is arranged in the inside of cabinet 1, wherein air conditioning mechanism 2 includes radiator 21 installed in the inside of first chamber 13, one end of radiator 21 is connected with compressor 22, compressor 22 is located in the inner bottom wall of second chamber 15, one end of compressor 22 is fixedly connected with condenser 23, one end of condenser 23 is fixedly connected with expansion valve 24, expansion valve 24 is fixedly connected with the other end of radiator 21;Water cooling mechanism 3 is arranged in the inner bottom wall of second chamber 15, to be wrapped in the surface of condenser 23, water cooling mechanism 3 includes water cooling tank 31 fixed in the inner bottom wall of second chamber 15, water inlet pipe 32 and water outlet pipe 33 are respectively arranged in the both sides of water cooling tank 31, condenser 23 is located in the inner wall of water cooling tank 31, the end of water inlet pipe 32 is fixedly connected with spiral pipe 321, spiral pipe 321 is wound in the surface of compressor 22, and the end of spiral pipe 321 is fixed in the side wall of water cooling tank 31, the surface of water inlet pipe 32 is fixed with solenoid valve, the end of water outlet pipe 33 is fixedly connected with circulating pipe 331, circulating pipe 331 is fixedly connected with the side wall of water cooling tank 31, and solenoid three-way valve is arranged at the connecting place of circulating pipe 331 and water outlet pipe 33.
[0028] With such scheme, when low-temperature cooling water is injected into water cooling tank 31 through water inlet pipe 32, condenser 23 can be water-cooled and cooled, avoiding the problems of poor cooling effect and large noise in traditional air cooling, and further improving the working efficiency of air conditioner.
[0029] In specific work, low-temperature cooling water is injected into water cooling tank 31 through water inlet pipe 32, and then stored in water cooling tank 31, since condenser 23 is installed in the inside of water cooling tank 31, when condenser 23 exchanges heat with refrigerant, the heat exchange efficiency of condenser 23 can be accelerated by low-temperature cooling water, and then the cooling water in water cooling tank 31 after heat exchange can be discharged outside or used through the arrangement of water outlet pipe 33, and the heat exchange efficiency of condenser 23 by water cooling tank 31 can be ensured through the circulation of water inlet and water outlet of water inlet pipe 32 and water outlet pipe 33. When external cooling water passes through spiral pipe 321 at the end of water inlet pipe 32, since spiral pipe 321 is sleeved on the surface of compressor 22, the temperature of the surface of compressor 22 can be absorbed when cooling water flows, so that the surface of compressor 22 is cooled, and the flow speed of cooling water can be prolonged when low-temperature flows in spiral pipe, so that the temperature of the surface of compressor 22 is better absorbed. The circulation pipe 331 connected to the end of the water outlet pipe 33 can circulate the cooling water in the water cooling tank 31, so as to deliver the cooling water at the bottom of the water cooling tank 31 to the upper part of the water cooling tank 31, thereby uniformly exchanging heat with the cooling water, and the circulation pipe 331 is outside the cabinet 1, so that the circulating cooling water can be cooled by the indoor temperature, thereby prolonging the service life of the cooling water.
[0030] In addition, in winter, when hot water is injected into the water inlet pipe 32, the hot water can be delivered to the inside of the water cooling tank 31, and the surface of the condenser 23 is heated, so as to improve the working efficiency of the condenser 23.
[0031] In one embodiment, referring to Figure 4 、 Figure 5 and Figure 6 , a high-efficiency high-temperature-resistant cooling water type air conditioning device includes a cabinet 1, and air outlets 11 and air inlets 12 respectively arranged on the surface of the cabinet 1, and further includes: a first chamber 13 and a second chamber 15 formed by a partition plate on the inner wall of the cabinet 1, and a shaft fan 14 rotatably connected to the driving part in the first chamber 13; an air conditioning mechanism 2 arranged in the cabinet 1, wherein the air conditioning mechanism 2 includes a radiator 21 arranged in the first chamber 13, one end of the radiator 21 is connected to a compressor 22, the compressor 22 is located on the inner bottom wall of the second chamber 15, one end of the compressor 22 is fixedly connected to a condenser 23, one end of the condenser 23 is fixedly connected to an expansion valve 24, and the other end of the expansion valve 24 is fixedly connected to the radiator 21; a water cooling mechanism 3 arranged on the inner bottom wall of the second chamber 15, and arranged to cover the surface of the condenser 23, a deflation mechanism 4 fixedly connected to the side wall of the water cooling tank 31, the deflation mechanism 4 includes a deflation pipe 41 fixedly connected to the side wall of the water cooling tank 31, a sliding plate 42 slidably connected in the deflation pipe 41, a touch switch 43 fixedly connected in the deflation pipe 41, a touch rod 44 fixedly connected to the surface of the sliding plate 42, the touch rod 44 and the touch switch 43 are on the same horizontal line, a deflation hole 45 arranged at the bottom of the deflation pipe 41, a reset spring 46 fixedly connected in the deflation pipe 41, and one end of the reset spring 46 is fixedly connected to the sliding plate 42.
[0032] With such a scheme, the sliding plate 42 in the deflation pipe 41 can monitor the change of the water temperature in the water cooling tank 31, and when the water temperature exceeds the rated value, the electromagnetic valve can be automatically triggered to work, so as to automatically exchange heat with the cooling water in the water cooling tank 31.
[0033] Specifically, when the deflation mechanism 4 is arranged, when the deflation pipe 41 is connected to the side wall of the water-cooled box 31, because the inside of the water-cooled box 31 is a closed space, when the temperature of the cooling water in the water-cooled box 31 changes, the cooling water in the water-cooled box 31 generates high-temperature gas pressure, when the water temperature is higher than the rated value, the gas pressure pushes the sliding plate 42 in the deflation pipe 41 to displace, so that the surface of the sliding plate 42 touches the touch rod 44 and touches the surface of the touch switch 43, at this time, the touch switch 43 opens the electromagnetic three-way valve on the surface of the circulating pipe 331 and the electromagnetic valve on the surface of the water inlet pipe 32 to work, through the opening of the electromagnetic valve on the surface of the water inlet pipe 32, the low-temperature cooling water outside can be injected into the water-cooled box 31, and after the electromagnetic three-way valve between the circulating pipe 331 and the water outlet pipe 33 is switched, the high-temperature cooling water in the water-cooled box 31 can be discharged to the outside, so as to exchange heat for the cooling water in the water-cooled box 31, when the touch rod 44 touches the surface of the touch switch 43, at this time, the sliding plate 42 will pass the position of the deflation hole 45, so as to leak the high-temperature gas pressure in the water-cooled box 31, so as to quickly exchange heat for the cooling water in the water-cooled box 31, when the temperature of the cooling water in the water-cooled box 31 is lower than the rated value, at this time, the water-cooled box 31 will not have high gas pressure, under the spring force of the reset spring 46, the touch rod 44 can be automatically pushed to reset to the initial position.
[0034] In one embodiment, referring to Figure 5 and Figure 7 , the inside of the circulating pipe 331 is rotatably connected with a transmission shaft 332 through a support, one end of the transmission shaft 332 is fixedly connected with a turbine 333, the turbine 333 is located in the inside of the circulating pipe 331, the end of the axial flow fan 14 is fixedly connected with a stirring rod 334, the end of the stirring rod 334 is used to drive the transmission shaft 332 to rotate, the end of the stirring rod 334 is fixedly connected with a bevel gear one 3341, the surface of the bevel gear one 3341 is meshingly connected with a bevel gear two 3342, the bevel gear two 3342 is fixed on the end of the transmission shaft 332, the surfaces of the bevel gear one 3341 and the bevel gear two 3342 are covered with a protective shell 3343, the transmission shaft 332 and the stirring rod 334 rotate in the inner wall of the protective shell 3343 through bearings.
[0035] By adopting the scheme, through the connection of the stirring rod 334 and the end of the axial flow fan 14, the axial flow fan 14, the stirring rod 334 and the turbine 333 can be driven to work under one driving part, so as to reduce the production cost, and at the same time, it is ensured that the turbine 333 and the stirring rod 334 can be driven to work simultaneously only when the axial flow fan 14 works.
[0036] Specifically, when the transmission shaft 332 rotates inside the circulation pipe 331, the turbine 333 at the end of the transmission shaft 332 rotates, and the water at the bottom of the water cooling tank 31 is extracted upwards and then delivered to the upper part of the water cooling tank 31 through the circulation pipe 331, so as to circulate the cooling water in the water cooling tank 31 and uniformly exchange the cooling water in the water cooling tank 31, so as to ensure the uniformity of the cooling water temperature. In addition, when the cooling water circulates through the circulation pipe 331, heat exchange with the outside can be performed, so as to cool the cooling water and prolong the use time of the cooling water. The stirring rod 334 is fixed at the end of the axial flow fan 14, and when the axial flow fan 14 is driven, the stirring rod 334 rotates. Since the stirring rod 334 is located inside the water cooling tank 31, the cooling water in the inner wall of the water cooling tank 31 can be stirred, so as to further accelerate the uniformity of the cooling water temperature. Under the rotation of the stirring rod 334, the bevel gear one 3341 and the bevel gear two 3342 are synchronously rotated. Since the bevel gear two 3342 is fixed at the end of the transmission shaft 332, the transmission shaft 332 can be powered. The protective shell 3343 is wrapped around the surfaces of the bevel gear one 3341 and the bevel gear two 3342, which can protect the bevel gear one 3341 and the bevel gear two 3342 from the interference of the cooling water.
[0037] It is to be noted that the stirring rod 334 is connected to the axial flow fan 14, and when the axial flow fan 14 has different rotating speeds, the stirring rod 334 can have different rotating speeds, so as to ensure different flow rates of the water circulation.
[0038] The above is only a preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacements or changes to the technical solution and the inventive concept of the present application within the technical scope disclosed by the present application, which should be covered by the protection scope of the present application.
Claims
1. A high-efficiency, high-temperature-resistant cooling water air-conditioning device, comprising a cabinet (1), and an air outlet (11) and an air inlet (12) respectively provided on the surface of the cabinet (1), characterized in that: Also includes: A first chamber (13) and a second chamber (15) are formed on the inner wall of the cabinet (1) by a partition, and an axial flow fan (14) is rotatably connected to the interior of the first chamber (13) via a driving unit; An air conditioning mechanism (2) is arranged inside the cabinet (1), wherein the air conditioning mechanism (2) includes a radiator (21) installed inside the first chamber (13), one end of the radiator (21) is connected to a compressor (22), the compressor (22) is located on the inner bottom wall of the second chamber (15), one end of the compressor (22) is fixedly connected to a condenser (23), one end of the condenser (23) is fixedly connected to an expansion valve (24), and the expansion valve (24) is fixedly connected to the other end of the radiator (21); The water cooling mechanism (3) is arranged on the inner bottom wall of the second chamber (15) and is used to cover the surface of the condenser (23).
2. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 1, characterized in that: The water cooling mechanism (3) comprises a water cooling box (31) fixed to the inner bottom wall of the second chamber (15), a water inlet pipe (32) and a water outlet pipe (33) are respectively provided on both sides of the water cooling box (31), and the condenser (23) is located on the inner wall of the water cooling box (31).
3. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 2, characterized in that: The end of the water inlet pipe (32) is fixedly connected to a spiral pipe (321), the spiral pipe (321) is wound around the surface of the compressor (22), and the end of the spiral pipe (321) is fixed to the side wall of the water cooling box (31), and a solenoid valve is fixed to the surface of the water inlet pipe (32).
4. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 2, characterized in that: The end of the water outlet pipe (33) is fixedly connected to a circulation pipe (331), the circulation pipe (331) is fixedly connected to the side wall of the water cooling box (31), and an electromagnetic three-way valve is provided at the connection between the circulation pipe (331) and the water outlet pipe (33).
5. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 2, characterized in that: The side wall of the water cooling box (31) is fixedly connected to a degassing mechanism (4), the degassing mechanism (4) comprises a degassing pipe (41) fixed to the side wall of the water cooling box (31), a sliding plate (42) is slidably connected inside the degassing pipe (41), a touch switch (43) is fixedly connected inside the degassing pipe (41), a touch rod (44) is fixedly connected to the surface of the sliding plate (42), and the touch rod (44) and the touch switch (43) are on the same horizontal line.
6. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 5, characterized in that: A vent hole (45) is provided at the bottom of the vent pipe (41).
7. A high energy efficiency and high temperature resistant cooling water type air conditioner according to claim 5, characterized in that: A return spring (46) is fixedly connected to the interior of the air release pipe (41), and an end of the return spring (46) is fixedly connected to the sliding plate (42).
8. A high energy efficiency and high temperature resistant cooling water type air conditioner according to claim 4, characterized in that: The interior of the circulation pipe (331) is rotatably connected to a transmission shaft (332) via a bracket, one end of the transmission shaft (332) is fixedly connected to a turbine (333), and the turbine (333) is located inside the circulation pipe (331). The end of the axial flow fan (14) is fixedly connected to a stirring rod (334), and the end of the stirring rod (334) is used to drive the transmission shaft (332) to rotate.
9. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 8, characterized in that: The end of the stirring rod (334) is fixedly connected to a bevel gear 1 (3341), the surface of the bevel gear 1 (3341) is meshedly connected to a bevel gear 2 (3342), the bevel gear 2 (3342) is fixed to the end of the transmission shaft (332), the surfaces of the bevel gear 1 (3341) and the bevel gear 2 (3342) are covered with a protective shell (3343), and the transmission shaft (332) and the stirring rod (334) rotate on the inner wall of the protective shell (3343) through bearings.
10. A high energy efficiency and high temperature resistant cooling water type air conditioning device according to claim 2, characterized in that: A collecting box (25) is provided at the end of the radiator (21), a discharge pipe (26) is fixedly connected to the bottom of the collecting box (25), and the discharge pipe (26) is fixedly connected to the side wall of the water cooling box (31).
Citation Information
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