Cooling tower for ganoderma lucidum wine production

Through the design of dislocation spraying devices, circulation pumps, condenser pipes and triangular sprayers, the problems of uneven cooling water and insufficient cooling force of the cooling tower are solved, and the efficient cooling and heat dissipation effect of the cooling tower for Taisui wine production is achieved.

CN223307371UActive Publication Date: 2025-09-05HUBEI TAISU BIOENGINEERING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422747654.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-05
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The cooling water of the existing cooling tower is unevenly sprayed, unable to be recycled, and the cooling force is insufficient, which affects the cooling efficiency of the wine steam, and the waste heat affects the cooling effect of the next spray, and insufficient heat dissipation.

Method used

A cooling tower for Tai Sui wine production is designed, including a misaligned spraying device, a circulation pump, a condenser tube, a filter plate and a triangle sprayer. The spray area is increased by a misaligned spraying device, the circulation pump realizes the cooling water spraying again, the condenser tube enhances the cooling of the wine steam, the filter plate extends the water residence time, and the triangle sprayer performs physical cooling.

Benefits of technology

The uniform spraying and recycling of cooling water is achieved, the cooling force of wine steam is enhanced, the heat dissipation and heat exchange area is improved, and the continuous cooling effect of cooling water is ensured.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223307371U_ABST
    Figure CN223307371U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cooling towers, in particular to a cooling tower for ganoderma lucidum wine production, which comprises a cooling tower body, a heat dissipation device is arranged on the left side of the cooling tower body, a collecting tank is arranged on the right side of the cooling tower body, and the cooling tower body comprises an upper cabin body, a middle cabin body and a lower cabin body from top to bottom. By arranging the spraying devices which are installed in a staggered mode, the spraying area is increased, the spraying degree is increased, the circulating pump is arranged on the second connecting pipe, the circulating pump is turned on by switching on an external power source, and the heat dissipation device comprises an upper outer shell and a lower outer shell from top to bottom, and an inner cabin is arranged in the collecting tank. In this way, cooling water can enter the spraying pipe again from the left end of the cabin body, the cooling water is continuously sprayed to the lower portion through the spraying head at the lower end of the spraying pipe, the cooling force on wine steam is increased by arranging the condensation pipe, and the cooling water sprayed by the spraying head above is combined, so that the temperature of the wine steam in the condensation pipe is continuously dissipated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of cooling towers, in particular to a cooling tower for producing Tai Sui wine. Background Art

[0002] A cooling tower is a device that uses water as a circulating coolant to absorb heat from a system and discharge it into the atmosphere to reduce the water temperature. A cooling tower consists of a tower body, a water distribution system, a water sprinkling device, a ventilation system, and a water collection tank. The tower body is often built in a circular, rectangular, or polygonal shape. It is mainly used for air temperature regulation, manufacturing, and processing. The working principle is to use water and air to flow in contact, generate steam during the flow contact process, and use the steam to evaporate and carry away heat, thereby achieving the effect of cooling and heat dissipation.

[0003] The utility model with the announcement number CN216558391U discloses a high-efficiency cooling tower, comprising a tower body, a cooling reaction chamber formed in a hollow interior of the tower body; a water distributor, an input end of the water distributor is connected to external cooling water, and an output end of the water distributor is flatly laid above the cooling reaction chamber for uniformly spraying the cooling water downward; a heat exchange radiator, the heat exchange radiator is mounted above the cooling reaction chamber, the output end of the water distributor is passed through the heat exchange radiator and performs heat exchange with the heat exchange radiator; a filler, the filler is mounted in the middle of the cooling reaction chamber to expand the contact area of ​​the cooling water and form a water film; and an airflow generating fan, the airflow generating fan is mounted on the top of the cooling reaction chamber and is used to draw air from the outside of the tower body and perform heat exchange with the cooling water on the filler;

[0004] The above technical solution can accelerate the cooling of cooling water and shorten the cooling time of cooling water by adding a heat exchange radiator, and the overall cooling effect is good. However, the cooling water is not sprayed more evenly, and the cooling water cannot be recycled. The cooling force is not strong enough to quickly cool the wine vapor. The circulating water will have residual heat after long-term use, which will affect the next spray cooling and cannot increase the heat dissipation. Utility Model Content

[0005] The purpose of the utility model is to provide a cooling tower for the production of Tai Sui wine, so as to solve the problem of the high-efficiency cooling tower with authorization announcement number CN216558391U proposed in the above background technology, but the cooling water is not sprayed more evenly, and the cooling water cannot be recycled. The cooling force is not strong enough to quickly cool the wine vapor. The circulating water will have residual heat after long-term use, which affects the next spray cooling and cannot increase the heat dissipation.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A cooling tower for Tai Sui wine production, comprising a cooling tower body for cooling wine vapor, a heat dissipation device for secondary cooling of cooling water is provided on the left side of the cooling tower body, a collection tank for collecting wine vapor is provided on the right side of the cooling tower body, the cooling tower body comprises an upper cabin body, a middle cabin body and a lower cabin body from top to bottom, a plurality of support columns are provided at the lower end of the lower cabin body, the heat dissipation device comprises an upper outer shell and a lower outer shell from top to bottom, a water inlet pipe communicating with the interior is provided on the outer wall of the lower outer shell near the top, an inner cabin is provided inside the collecting tank, a delivery pipe is provided at the upper end of the inner cabin, an exhaust pipe communicating with the interior is provided on the outer wall of the inner cabin near the top, and a water outlet pipe communicating with the interior is provided on the outer wall of the inner cabin near the bottom.

[0008] Preferably, a ventilation fan is provided on the inner surface of the upper end of the upper cabin body, a connecting rod is provided at the lower end of the ventilation fan, a protective cover is provided at the outer end of the ventilation fan, one end of the connecting rod is welded and fixed to the lower end of the ventilation fan, the other end of the connecting rod is welded and fixed to the inner surface of the protective cover, and the outer surface of the protective cover is welded and fixed to the inner surface of the upper cabin body.

[0009] In the utility model, the ventilation fan is driven to operate by connecting to an external power source, so that the indoor and outdoor air are exchanged, thereby achieving heat dissipation of the indoor temperature. The ventilation fan and the protective cover are connected and fixed by arranging a connecting rod. The stability is increased by welding the protective cover to the upper cabin body. The cooling tower body is stabilized on the horizontal plane by arranging support columns. The cooling water is input into the heat dissipation device by arranging a water inlet pipe. The height of the input cooling water does not exceed the lower end of the triangular sprinkler. The wine vapor is input into the inside of the condenser by arranging an exhaust pipe.

[0010] Preferably, two identical spray devices are provided on the inner surface of the middle cabin body near the upper end, and the two spray devices are installed in an offset manner. The spray device includes several spray pipes and protective rings provided on the outside of the spray pipes. The outer surface of the protective ring is welded and fixed to the inner surface of the middle cabin body. A second connecting pipe is provided near the upper part of the outer surface of the middle cabin body, and a circulation pump is provided on the second connecting pipe. Several nozzles are provided at the lower end of the spray pipes.

[0011] In the utility model, a staggered spray device is provided to increase the spraying area and enhance the spraying degree. A circulation pump is provided on the second connecting pipe, and the circulation pump is turned on by connecting to an external power source, so that the cooling water can re-enter the interior of the spray pipe from the left end of the middle cabin, and continuously spray the cooling water downward through the nozzle at the lower end of the spray pipe. By providing the nozzle, the range of the sprayed cooling water is wider, thereby increasing the spraying area of ​​the condenser pipe below.

[0012] Preferably, a condenser pipe is provided near the middle of the middle cabin body, the right end of the condenser pipe is welded and fixed to the delivery pipe, and the delivery pipe extends to the inner cabin and is communicated with the inner cabin.

[0013] In the utility model, a condenser is provided to increase the cooling effect on the wine vapor, and the delivery pipe is plugged and fixed to the inner cabin to input the wine vapor flowing out of the condenser into the inner cabin for storage. Combined with the cooling water sprayed by the upper nozzle, the wine vapor in the condenser is continuously cooled. The air delivery pipe on the left side of the condenser is higher than the discharge pipe on the right side, and the wine vapor is condensed into liquid wine and guided to the collection tank for storage.

[0014] Preferably, a filter plate is provided near the lower end of the middle cabin body, the outer surface of the filter plate is welded and fixed to the inner surface of the middle cabin body, and two identical cooling fillers are placed on the upper end of the filter plate, and the size of the cooling fillers is adapted to the inner diameter of the middle cabin body.

[0015] In the utility model, the heat dissipation is increased by setting two cooling fillers, and the heat exchange area and heat exchange amount are increased at the same time. The cooling water residence time is further prolonged by setting a filter plate. The filter plate is welded and fixed to the middle cabin to ensure the position of the filter plate and the placement of the cooling filler.

[0016] Preferably, the lower cabin body is funnel-shaped, a water pump is provided at the lower end of the lower cabin body, a water inlet port of the water pump is plugged and fixed to the lower end of the lower cabin body, and a water delivery port of the water pump is connected to a first connecting pipe.

[0017] In the utility model, by setting the lower cabin body to a funnel shape and combining the output port and the water inlet port of the water pump, after the external power is connected to start the water pump, the cooling water enters the water inlet port through the lower end of the lower cabin body, and is transported from the water inlet port to the water outlet port, and then enters the first connecting pipe.

[0018] Preferably, a ventilation fan is provided inside the upper shell, and the outer surface of the ventilation fan is welded and fixed to the inner surface of the upper shell. A triangular sprayer is provided inside the lower shell near the upper end, and a plurality of spray tubes are provided on the lower surface of the triangular sprayer. The lower end of the triangular sprayer is bonded and fixed to one end of the first connecting pipe. A second connecting pipe (20) is provided on the left outer wall of the lower shell (22), and the interior of the second connecting pipe (20) is communicated with the internal space of the lower shell (22).

[0019] In the utility model, the second connecting pipe is plugged and fixed to the inside of the lower shell, so that the cooling water inside the heat dissipation device can be re-entered into the second connecting pipe by using a circulation pump, and the cooling water can be sprayed out by using a spray tube to achieve physical cooling of the cooling water. The lower end of the triangular sprayer is bonded and fixed to the first connecting pipe, and the water pump is started to input the cooling water output from the lower cabin into the triangular sprayer and sprayed out through the spray tube to achieve heat dissipation of the circulated cooling water.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. The utility model increases the spraying area and the degree of spraying by arranging a staggered installation of the spraying device, and arranges a circulation pump on the second connecting pipe, connects the external power supply to start the circulation pump, so that the cooling water can re-enter the interior of the spray pipe from the left end of the middle cabin, and continuously sprays the cooling water downward through the nozzle at the lower end of the spray pipe. The cooling force of the wine vapor is increased by arranging the condensing pipe, and the wine vapor in the condensing pipe is continuously cooled by combining the cooling water sprayed by the upper nozzle. The lower end of the triangular sprayer is bonded and fixed to the first connecting pipe, and the water pump is started to input the cooling water output from the lower cabin into the triangular sprayer, and sprayed out through the spray tube, thereby realizing the cooling treatment of the circulated cooling water.

[0022] 2. The utility model sets a nozzle to make the cooling water sprayed over a wider range, increases the spraying area of ​​the condenser below, and inputs the wine vapor flowing out of the condenser into the inner cabin for storage by plugging and fixing the delivery pipe to the inner cabin. The heat dissipation is increased by setting two cooling fillers, and the heat exchange area and heat exchange amount are increased at the same time. The cooling water residence time is further extended by setting a filter plate. The cooling water is input into the temperature dissipation device by setting a water inlet pipe. The height of the input cooling water does not exceed the lower end of the triangular sprayer. The wine vapor is input into the inside of the condenser by setting an exhaust pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the overall structure of the cooling tower of the present invention;

[0024] Figure 2 This is a schematic diagram of the decomposed structure of the cooling tower body of the present invention;

[0025] Figure 3 This is a schematic diagram of the cross-sectional structure of the cooling tower of the present utility model;

[0026] Figure 4 This is a schematic structural diagram of the connecting rod and the first connecting pipe of the present invention.

[0027] The meaning of each number in the figure is:

[0028] 1. Cooling tower body; 10. Upper cabin; 100. Protective cover; 101. Ventilation fan; 102. Connecting rod; 11. Middle cabin; 12. Lower cabin; 120. Water pump; 13. Spraying device; 130. Protective ring; 131. Spray pipe; 132. Spray nozzle; 14. Condenser; 15. Cooling filler; 16. Filter plate; 17. Exhaust pipe; 170. Water outlet pipe; 18. Water inlet pipe; 19. First connecting pipe

[0029] 2. Heat dissipation device; 20. Second connecting pipe; 21. Upper housing; 22. Lower housing; 220. Triangular sprayer; 221. Spray tube; 23. Circulation pump;

[0030] 3. Collection tank; 30. Inner cabin; 31. Delivery pipe; 32. Support column. DETAILED DESCRIPTION

[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] See also Figures 1-4 , this embodiment provides a technical solution:

[0033] A cooling tower for Tai Sui wine production includes a cooling tower body 1 for cooling wine vapor, a heat dissipation device 2 for secondary cooling of cooling water is provided on the left side of the cooling tower body 1, and a collection tank 3 for collecting wine vapor is provided on the right side of the cooling tower body 1. The cooling tower body 1 includes an upper cabin 10, a middle cabin 11 and a lower cabin 12 from top to bottom, and a plurality of support columns 32 are provided at the lower end of the lower cabin 12. The heat dissipation device 2 includes an upper outer shell 21 and a lower outer shell 22 from top to bottom, and an outer wall of the lower outer shell 22 is welded with an inlet pipe 18 near the top. An inner cabin 30 is provided inside the collection tank 3, and a delivery pipe 31 is provided at the upper end of the inner cabin 30. An outer wall of the inner cabin 30 is provided with an exhaust pipe 17 connected to the interior near the top, and an outer wall of the inner cabin 30 is provided with an outlet pipe 170 connected to the interior near the bottom.

[0034] In this embodiment, a ventilation fan 101 is provided on the inner surface of the upper end of the upper cabin body 10, a connecting rod 102 is provided at the lower end of the ventilation fan 101, and a protective cover 100 is provided at the outer end of the ventilation fan 101. One end of the connecting rod 102 is welded and fixed to the lower end of the ventilation fan 101, and the other end of the connecting rod 102 is welded and fixed to the inner surface of the protective cover 100. The outer surface of the protective cover 100 is welded and fixed to the inner surface of the upper cabin body 10.

[0035] In the present invention, the ventilation fan 101 is connected and fixed to the protective cover 100 by arranging a connecting rod 102, and the stability is increased by welding the protective cover 100 to the upper cabin body 10. The ventilation fan 101 is driven by connecting to an external power supply to exchange indoor and outdoor air, thereby achieving heat dissipation of the indoor temperature. The cooling tower body 1 is stabilized on the horizontal plane by arranging a support column 32, and the cooling water is input into the heat dissipation device 2 by arranging a water inlet pipe 18. The height of the input cooling water does not exceed the lower end of the triangular sprinkler 220. The exhaust pipe 17 is provided to discharge the air inside the collection tank 3, so that the internal air pressure of the collection tank 3 is balanced with the external air pressure, which helps to continuously guide the liquid wine into the collection tank 3 for collection.

[0036] Specifically, two identical spray devices 13 are provided near the upper end of the inner surface of the middle cabin body 11. The two spray devices 13 are installed in an offset manner. The spray device 13 includes several spray pipes 131 and a protective ring 130 provided on the outside of the spray pipe 131. The outer surface of the protective ring 130 is welded and fixed to the inner surface of the middle cabin body 11. A second connecting pipe 20 is provided near the top of the outer surface of the middle cabin body 11. A circulating pump 23 is provided on the second connecting pipe 20, and several nozzles 132 are provided at the lower end of the spray pipe 131.

[0037] In the present invention, a circulation pump 23 is provided on the second connecting pipe 20, and the external power is turned on to start the circulation pump 23, so that the cooling water can re-enter the interior of the spray pipe 131 from the left end of the middle cabin 11, and the cooling water is continuously sprayed downward through the nozzle 132 at the lower end of the spray pipe 131. By providing the nozzle 132, the range of the sprayed cooling water is wider, and the spraying area of ​​the lower condenser pipe 14 is increased. By providing the staggered installation of the spray device 13, the spraying area is increased and the spraying degree is increased.

[0038] Next, a condensation pipe 14 is provided near the middle position of the middle cabin body 11 , and the right end of the condensation pipe 14 is welded and fixed to the delivery pipe 31 . The delivery pipe 31 extends to the inner cabin 30 and is in communication with the inner cabin 30 .

[0039] In the present invention, the delivery pipe 31 is plugged and fixed to the inner cabin 30, so that the wine vapor flowing out of the condenser tube 14 is input into the inner cabin 30 for storage, and the cooling effect of the wine vapor is increased by providing the condenser tube 14.

[0040] Furthermore, a filter plate 16 is provided near the lower end of the middle cabin body 11. The outer surface of the filter plate 16 is welded and fixed to the inner surface of the middle cabin body 11. Two identical cooling fillers 15 are placed on the upper end of the filter plate 16. The size of the cooling filler 15 is adapted to the inner diameter of the middle cabin body 11.

[0041] In the present invention, the cooling water residence time is further prolonged by setting the filter plate 16, and the position of the filter plate 16 is stabilized by welding and fixing the filter plate 16 to the middle cabin body 11, while the placement of the cooling filler 15 is achieved. By setting two cooling fillers 15, the heat dissipation is increased, and the heat exchange area is increased, thereby increasing the heat exchange amount.

[0042] It should be noted that the lower cabin body 12 is funnel-shaped, and a water pump 120 is provided at the lower end of the lower cabin body 12. The water inlet port of the water pump 120 is plugged and fixed to the lower end of the lower cabin body 12, and the water delivery port of the water pump 120 is connected to the first connecting pipe 19.

[0043] In the present invention, by setting the lower cabin body 12 to be funnel-shaped and combining the output port and the water inlet port of the water pump 120, after the external power is connected to start the water pump 120, the cooling water enters the water inlet port through the lower end of the lower cabin body 12, and is transported from the water inlet port to the water outlet port, and then enters the first connecting pipe 19.

[0044] Finally, it should be said that a ventilation fan 101 is provided inside the upper shell 21, and the outer surface of the ventilation fan 101 is welded and fixed to the inner surface of the upper shell 21. A triangular sprayer 220 is provided near the upper end inside the lower shell 22, and a plurality of spray tubes 221 are provided on the lower surface of the triangular sprayer 220. The lower end of the triangular sprayer 220 is bonded and fixed to one end of the first connecting pipe 19. A second connecting pipe 20 is provided on the left outer wall of the lower shell 22, and the interior of the second connecting pipe 20 is connected to the internal space of the lower shell 22.

[0045] In the present invention, the second connecting pipe 20 is plugged and fixed to the inside of the lower shell 22, so that the cooling water inside the heat dissipation device 2 can be re-entered into the second connecting pipe 20 by using the circulation pump 23, and the cooling water can be sprayed out by using the spray tube 221 to achieve physical cooling of the cooling water. The lower end of the triangular sprayer 220 is bonded and fixed to the first connecting pipe 19, and the water pump 120 is started to input the cooling water output from the lower cabin 12 into the triangular sprayer 220, and sprayed out through the spray tube 221 to achieve heat dissipation treatment of the circulated cooling water.

[0046] When using a cooling tower for the production of Tai Sui wine according to this embodiment, a ventilation fan 101 is first installed on the inner surface of the upper end of the upper cabin 10, two staggered spray devices 13 are installed near the upper end of the inner surface of the middle cabin 11, a second connecting pipe 20 is provided near the top of the outer surface of the middle cabin 11, a circulating pump 23 is installed on the second connecting pipe 20, a condensing pipe 14 is installed near the middle position of the middle cabin 11, a filter plate 16 is installed near the lower end of the middle cabin 11, and two identical cooling devices are placed on the upper end of the filter plate 16. The filler 15 is removed, and a water pump 120 is installed at the lower end of the lower cabin 12. The water inlet port of the water pump 120 is plugged and fixed to the lower end of the lower cabin 12. The water delivery port of the water pump 120 is connected to the first connecting pipe 19. A ventilation fan 101 is installed inside the upper shell 21. A triangular sprayer 220 with a spray tube 221 is installed near the upper end of the lower shell 22. The lower end of the triangular sprayer 220 is bonded and fixed to one end of the first connecting pipe 19. A second connecting pipe 20 is provided on the outer wall of the lower shell 22 near the top.

[0047] When the cooling water needs to be sprayed more evenly, the spraying area can be increased and the spraying degree can be increased by setting the spraying device 13 installed in an offset manner;

[0048] When the cooling water needs to be recycled, a circulation pump 23 is provided on the second connecting pipe 20. The circulation pump 23 is turned on by connecting to an external power source, so that the cooling water can re-enter the spray pipe 131 from the left end of the middle cabin 11. The cooling water is continuously sprayed downward through the nozzle 132 at the lower end of the spray pipe 131. The provision of the nozzle 132 allows the cooling water to be sprayed over a wider range, thereby increasing the spraying area of ​​the condenser pipe 14 below.

[0049] When it is necessary to quickly cool the wine vapor, the second connecting pipe 20 is plugged and fixed to the inside of the lower shell 22, so that the cooling water inside the heat dissipation device 2 re-enters the inside of the second connecting pipe 20 by using the circulation pump 23, and the cooling water is sprayed out by the spray tube 221 to achieve physical cooling of the cooling water. The lower end of the triangular sprayer 220 is bonded and fixed to the first connecting pipe 19, and the water pump 120 is started to input the cooling water output from the lower cabin 12 into the triangular sprayer 220, and the cooling water is sprayed out through the spray tube 221 to achieve heat dissipation of the circulated cooling water.

[0050] When the circulating water needs to be cooled, the lower end of the triangular sprayer 220 is bonded and fixed to the first connecting pipe 19, and the water pump 120 is started to input the cooling water output from the lower cabin 12 into the triangular sprayer 220, and sprayed out through the spray tube 221 to achieve the cooling treatment of the circulated cooling water.

[0051] When the wine vapor after the production of Tai Sui wine is cooled, the wine vapor is transported to the interior through the gas pipeline at the left end of the condenser 14. The area of ​​contact with the cooling water is increased through the curved condenser 14. Under the cooling of the cooling water, the gaseous wine vapor is condensed into liquid wine and guided to the collection tank 3 through the delivery pipe 31 for centralized collection and coordination. During collection, the end of the water outlet pipe 170 is sealed by a sealing plug, and the exhaust pipe 17 continuously discharges the internal air to keep the air pressure inside the collection tank 3 balanced with the external air pressure, which helps to continuously collect and coordinate the liquid wine. When the collection is completed, when it is necessary to discharge the liquid wine in the collection tank 3 in a centralized manner, the sealing plug at the end of the water outlet pipe 170 is removed, and the liquid wine collected inside is discharged through the water outlet pipe 170.

Claims

1. A cooling tower for producing Tai Sui wine, comprising a cooling tower body (1) for cooling wine vapor, a heat dissipation device (2) for secondary cooling of cooling water provided on the left side of the cooling tower body (1), and a collection tank (3) for collecting wine vapor provided on the right side of the cooling tower body (1), characterized in that: The cooling tower body (1) comprises an upper cabin (10), a middle cabin (11) and a lower cabin (12) from top to bottom, and a plurality of support columns (32) are provided at the lower end of the lower cabin (12). The heat dissipation device (2) comprises an upper outer shell (21) and a lower outer shell (22) from top to bottom, and a water inlet pipe (18) communicating with the interior is provided on the outer wall of the lower outer shell (22) near the top. The collection tank (3) is provided with an inner cabin (30), and a delivery pipe (31) is provided at the upper end of the inner cabin (30). An exhaust pipe (17) communicating with the interior is provided on the outer wall of the inner cabin (30) near the top, and a water outlet pipe (170) communicating with the interior is provided on the outer wall of the inner cabin (30) near the bottom.

2. A cooling tower for producing Tai Sui wine according to claim 1, characterized in that: A ventilation fan (101) is provided on the inner surface of the upper end of the upper cabin body (10), a connecting rod (102) is provided on the lower end of the ventilation fan (101), a protective cover (100) is provided on the outer end of the ventilation fan (101), one end of the connecting rod (102) is welded and fixed to the lower end of the ventilation fan (101), the other end of the connecting rod (102) is welded and fixed to the inner surface of the protective cover (100), and the outer surface of the protective cover (100) is welded and fixed to the inner surface of the upper cabin body (10).

3. A cooling tower for producing Tai Sui wine according to claim 2, characterized in that: Two identical spray devices (13) are provided on the inner surface of the middle cabin body (11) near the upper end. The two spray devices (13) are installed in a staggered manner. The spray device (13) includes a plurality of spray pipes (131) and a protective ring (130) provided on the outside of the spray pipe (131). The outer surface of the protective ring (130) is welded and fixed to the inner surface of the middle cabin body (11). A second connecting pipe (20) is provided on the outer surface of the middle cabin body (11) near the upper end. A circulating pump (23) is provided on the second connecting pipe (20). A plurality of nozzles (132) are provided at the lower end of each of the spray pipes (131).

4. A cooling tower for producing Tai Sui wine according to claim 1, characterized in that: A condensation pipe (14) is provided near the middle of the middle cabin body (11), and the right end of the condensation pipe (14) is welded and fixed to the delivery pipe (31). The delivery pipe (31) extends to the inner cabin (30) and is in communication with the inner cabin (30).

5. A cooling tower for producing Tai Sui wine according to claim 1, characterized in that: A filter plate (16) is provided near the lower end of the middle cabin body (11), and the outer surface of the filter plate (16) is welded and fixed to the inner surface of the middle cabin body (11). Two identical cooling fillers (15) are placed on the upper end of the filter plate (16), and the size of the cooling fillers (15) is adapted to the inner diameter of the middle cabin body (11).

6. A cooling tower for producing Tai Sui wine according to claim 1, characterized in that: The lower cabin body (12) is funnel-shaped, and a water pump (120) is provided at the lower end of the lower cabin body (12). The water inlet port of the water pump (120) is plugged and fixed to the lower end of the lower cabin body (12), and the water delivery port of the water pump (120) is connected to a first connecting pipe (19).

7. A cooling tower for producing Tai Sui wine according to claim 3, characterized in that: A ventilation fan (101) is provided inside the upper shell (21), and the outer surface of the ventilation fan (101) is welded and fixed to the inner surface of the upper shell (21). A triangular sprayer (220) is provided inside the lower shell (22) near the upper end, and a plurality of spray tubes (221) are provided on the lower surface of the triangular sprayer (220). The lower end of the triangular sprayer (220) is bonded and fixed to one end of the first connecting pipe (19). A second connecting pipe (20) is provided on the left outer wall of the lower shell (22), and the interior of the second connecting pipe (20) is communicated with the internal space of the lower shell (22).