Automatic spraying and circulating cooling system for wine tank
Through the automated wine can spray circulation cooling system, combined with the inside and outside temperature sensing devices of the tank, a variable frequency water transfer pump and automatic control valve, the precise control of the wine can temperature is achieved, solving the problems of low efficiency and safety risks of traditional manual operation, and improving the brewing effect and cooling efficiency.
Patent Information
- Application Number
- CN202422568397.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-23
AI Technical Summary
The existing method of cooling wine cans relies on manual operations, which are inefficient, cost-effective and have safety risks, and cannot meet the needs of wine cans of different types and sizes, resulting in waste of energy and unstable product quality.
The automatic spray cycle cooling system is adopted, combined with the inside and outside the tank temperature sensing device, the frequency conversion water pump and automatic control valve, to realize automatic temperature control and water volume adjustment. Through the linkage between the temperature measurement components and the control system, the temperature of the wine tank is within the appropriate range.
It improves cooling efficiency, reduces labor costs and error rates, ensures safety, reduces water waste and energy consumption, and improves brewing effect and product quality.
Smart Images

Figure CN223283308U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of wine-making equipment, in particular to an automatic spraying circulation cooling system for a wine tank. Background Art
[0002] Temperature control is crucial for ensuring liquor quality and production safety during the storage and aging process. Traditional cooling methods typically rely on manual observation and adjustment, which can be inefficient, costly, pose safety risks, and hinder energy efficiency.
[0003] In the existing technology, people are used to detect the ambient temperature and judge and decide whether to start and stop the spray cooling device. At the same time, the spray water volume needs to be manually adjusted according to the ambient temperature. This relies on people's experience and sense of responsibility. There is a risk of safety accidents caused by behavioral factors such as improper operation, insufficient adjustment accuracy, delayed or advanced operation, etc. At the same time, it cannot meet the requirements of white wine aging process management, which in turn affects product quality. The water pumps used are generally fixed-frequency motors, and the operating power of the equipment remains basically unchanged. There is energy waste in the actual application process, which also increases the operating cost accordingly. It is also difficult to adapt to wine tanks of different types and sizes, which limits its wide application. Utility Model Content
[0004] In order to overcome the deficiencies of the prior art, the technical problem to be solved by the present invention is: how to improve the cooling effect of the wine tank and reduce the cost.
[0005] The technical solution adopted by the utility model to solve its technical problems is:
[0006] An automatic spray circulation cooling system for wine tanks comprises a wine storage tank, a spray assembly for spraying water onto the outer wall of the wine storage tank is provided on the outside of the wine storage tank, a water tank is provided on one side of the wine storage tank, a water pipe is provided between the water tank and the spray assembly, and the water pipe is provided with a variable frequency water pump and an automatic control valve; the wine storage tank is provided with a temperature measuring assembly, the temperature measuring assembly is electrically connected to a control system, and the control system is electrically connected to the automatic control valve and the variable frequency water pump respectively; a water collecting trough is provided below the wine storage tank, a return pipe is provided between the water collecting trough and the water tank, and the water collecting trough is higher than the water tank.
[0007] Furthermore, the above-mentioned spray assembly includes a mounting bracket arranged on the top of the above-mentioned wine storage tank, and a plurality of nozzles are evenly arranged at the lower end of the above-mentioned mounting bracket. The above-mentioned nozzles are connected to the above-mentioned water pipe, and the size of the above-mentioned mounting bracket is larger than the outer diameter of the cross section of the above-mentioned wine storage tank.
[0008] Furthermore, the temperature measuring component includes an internal tank temperature sensing device and an external wall temperature sensing device.
[0009] Furthermore, the above-mentioned in-tank temperature sensing device includes a temperature probe arranged on the inner wall of the above-mentioned wine storage tank, the above-mentioned temperature probe extends into the interior of the above-mentioned wine storage tank, the above-mentioned temperature probe is electrically connected to a first temperature transmitter, the above-mentioned first temperature transmitter is connected to the outer wall of the above-mentioned wine storage tank, and the above-mentioned first temperature transmitter is electrically connected to the above-mentioned control system.
[0010] Furthermore, the outer wall temperature sensing device includes a linear temperature sensing belt arranged around the outer wall of the wine storage tank, the linear temperature sensing belt is electrically connected to a second temperature transmitter, and the second temperature transmitter is electrically connected to the control system.
[0011] Furthermore, the lower end of the water storage tank is connected to a water storage tank, and the water storage tank and the water storage tank are connected to each other and an isolation net for isolating solid impurities is provided; the water pipe is connected to the water storage tank.
[0012] The beneficial effects of the utility model are:
[0013] The temperature of the wine storage tank is detected by the temperature measuring component, and the temperature signal is transmitted to the control system, converted into an electrical signal, and then the automatic control valve and variable frequency water pump are controlled to start and close and adjust the frequency, so as to realize the opening and closing of the water spray and the adjustment of the spray volume, thereby ensuring that the temperature of the wine storage tank is maintained within the optimal range and improving the winemaking effect. The entire solution can improve the cooling efficiency and thus the winemaking effect through automated temperature detection and cooling control, while reducing labor costs and error rates, ensuring safety and reliability, and reducing water waste and energy consumption. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the structure of the utility model;
[0015] The markings in the figure are: 1-wine storage tank, 2-mounting frame, 3-nozzle, 4-water pipe, 5-automatic valve, 6-frequency conversion water pump, 7-water collection tank, 8-return pipe, 9-water storage tank, 10-control system, 11-temperature probe, 12-linear temperature sensing strip, 13-first temperature transmitter, 14-second temperature transmitter, 15-water storage tank, 16-isolation net. DETAILED DESCRIPTION
[0016] The present invention will be further described below with reference to the accompanying drawings.
[0017] according to Figure 1As shown, the embodiment of the present application proposes an automatic spray circulation cooling system for wine tanks, including a wine storage tank 1, a spray assembly for spraying water to the outer wall of the wine storage tank 1 is provided on the outside of the wine storage tank 1, a water tank 9 is provided on one side of the wine storage tank 1, a water pipe 4 is provided between the water tank 9 and the spray assembly, and the water pipe 4 is provided with a variable frequency water pump 6 and an automatic control valve 5; the wine storage tank 1 is provided with a temperature measuring assembly, and the temperature measuring assembly is electrically connected to a control system 10, and the control system 10 is electrically connected to the automatic control valve 5 and the variable frequency water pump 6 respectively; a water collecting tank 7 is provided below the wine storage tank 1, and a return pipe 8 is provided between the water collecting tank 7 and the water storage tank 9, and the water collecting tank 7 is higher than the water storage tank 9.
[0018] First of all, it should be stated that the temperature of the wine storage tank 1 is detected by the temperature measuring component, and the temperature signal is transmitted to the control system 10 to be converted into an electrical signal, which then controls the opening and closing and frequency modulation of the automatic control valve 5 and the variable frequency water pump 6, thereby realizing the opening and closing of the water spray and the adjustment of the spray volume, thereby ensuring that the temperature of the wine storage tank 1 is maintained within a better range, thereby improving the wine storage effect. The entire solution can improve the cooling efficiency and thus the wine storage effect through automated temperature detection and cooling control, while reducing labor costs and error rates.
[0019] The water collecting tank 7 can recycle the spray water that has completed the temperature adjustment function of the wine storage tank 1, and re-enter the water storage tank 9 through the return pipe 8, thereby realizing water circulation and reducing consumption.
[0020] The spray assembly includes a mounting frame 2 disposed on the top of the wine storage tank 1. A plurality of nozzles 3 are evenly arranged at the lower end of the mounting frame 2. The nozzles 3 are connected to the water pipe 4. The size of the mounting frame 2 is larger than the outer diameter of the cross section of the wine storage tank 1. The water pipe 4 can be arranged in a serpentine coil at the lower end of the mounting frame 2 or in a cross shape. The nozzles 3 are arranged on the water pipe 4. When in use, water flows through the water pipe 4 and is sprayed from the plurality of nozzles 3 simultaneously, achieving a dense and large spray surface at the upper end of the wine storage tank 1, ensuring that the outer wall of the wine storage tank 1 can be completely covered by the spray water, achieving a stable temperature control effect. In addition, the plurality of nozzles 3 are evenly and closely spaced at the lower end of the mounting frame 2 to ensure that the spray water can completely cover the outer wall of the wine storage tank 1.
[0021] Regarding the above-mentioned temperature measuring component, the above-mentioned temperature measuring component includes an internal tank temperature sensing device and an outer wall temperature sensing device. The internal tank temperature sensing device is used to detect the temperature inside the wine storage tank 1, and the outer wall temperature sensing device is used to detect the temperature of the outer wall of the wine storage tank 1. Through the two detection structures, the real-time temperature of the wine storage tank 1 can be comprehensively detected, and the sensing is more accurate.
[0022] Specifically, the tank temperature sensing device includes a temperature probe 11 disposed on the inner wall of the wine storage tank 1. The temperature probe 11 extends into the interior of the wine storage tank 1 and is electrically connected to a first temperature transmitter 13. The first temperature transmitter 13 is connected to the outer wall of the wine storage tank 1 and is electrically connected to the control system 10. During operation, the temperature probe 11 detects the real-time temperature within the wine storage tank 1 and transmits the temperature signal to the first temperature transmitter 13. The first temperature transmitter 13 processes the sensed temperature signal and transmits it to the control system 10. The temperature probe 11 is an existing temperature sensor.
[0023] The above-mentioned outer wall temperature sensing device includes a linear temperature sensing belt 12 which is arranged around the outer wall of the above-mentioned wine storage tank 1. The above-mentioned linear temperature sensing belt 12 is electrically connected to the second temperature transmitter 14. The above-mentioned second stable transmitter is electrically connected to the above-mentioned control system 10. That is to say, the linear temperature sensing belt 12 senses the temperature of the outer wall of the wine storage tank 1 and transmits the outer wall temperature signal of the wine storage tank 1 to the second temperature transmitter 14. The second temperature transmitter 14 processes the sensed temperature signal and transmits it to the control system 10. The control system 10 comprehensively processes the signals of the first temperature transmitter 13 and the second temperature transmitter 14 to realize automatic control of the variable frequency water pump 6 and the automatic control valve 5.
[0024] The above-mentioned linear temperature sensing belt 12 includes a linear mounting belt arranged around the outer wall of the above-mentioned wine storage tank 1. The above-mentioned mounting belt is provided with a plurality of linearly arranged temperature sensing contacts, specifically temperature sensing probes, which can realize comprehensive sensing of the temperature of the outer wall of the wine storage tank 1 and improve accuracy.
[0025] In actual work, the temperature probe 11 and the linear temperature sensing tape 12 placed on the inner wall of the above-mentioned wine storage tank 1 synchronously monitor the temperature of the wine storage tank 1 in real time. If the temperature is sensed to be beyond the preset range, the first temperature transmitter 13 and the second temperature transmitter 14 will process the sensed temperature signal and transmit it to the control system 10. The control system 10 will comprehensively process the signals of the first temperature transmitter 13 and the second temperature transmitter 14, and the control system 10 will control the automatic control valve 5 to open. At the same time, according to the extent of the temperature exceeding the range, a reasonable frequency is selected to start the variable frequency drain pump, so that the spray water is sprayed from the water tank 9 through the water pipe 4 from the nozzle 3 to act on the wine storage tank 1 to achieve temperature adjustment.
[0026] In addition, the lower end of the water tank 9 is connected to a water trough 15, and the water trough 15 and the water tank 9 are connected to each other and an isolation net 16 for isolating solid impurities is provided; the water pipe 4 is connected to the water trough 15, and the isolation net 16 prevents the impurities carried by the backflowing spray water from entering the water pipe 4 and causing blockage of the nozzle 3, thereby improving the stability of the entire working process.
[0027] In summary, the present invention proposes an automatic spray circulation cooling system for wine tanks, in which temperature sensors are installed on the inner and outer surfaces of the wine tanks, and the sensors are connected to the control system 10. The control system 10 presets an ideal temperature range. When the surface or internal temperature of the wine tank reaches the requirement for turning on the spray system, the system automatically starts the variable frequency water pump 6 and the valve to start the system. When the temperature sensor detects that the surface or internal temperature of the wine tank exceeds the preset range, the control system 10 sends a signal to the variable frequency pump to adjust its operating frequency, and then adjusts the water volume of the spray device. Through precise temperature monitoring and intelligent water volume regulation, it ensures that the wine is stored and aged under the temperature conditions required by the process, thereby improving product quality and production safety.
Claims
1. An automatic spray circulation cooling system for wine tanks, characterized in that: The invention comprises a wine storage tank (1), wherein a spray assembly for spraying water onto the outer wall of the wine storage tank (1) is provided on the outer side of the wine storage tank (1), a water tank (9) is provided on one side of the wine storage tank (1), a water pipe (4) is provided between the water storage tank (9) and the spray assembly, and the water pipe (4) is provided with a variable frequency water pump (6) and an automatic control valve (5); the wine storage tank (1) is provided with a temperature measuring assembly, the temperature measuring assembly is electrically connected to a control system (10), and the control system (10) is electrically connected to the automatic control valve (5) and the variable frequency water pump (6) respectively; a water collecting trough (7) is provided below the wine storage tank (1), a return pipe (8) is provided between the water collecting trough (7) and the water storage tank (9), and the water collecting trough (7) is higher than the water storage tank (9).
2. The automatic spray circulation cooling system for wine tanks according to claim 1 is characterized in that: The spray assembly comprises a mounting frame (2) arranged on the top of the wine storage tank (1), a plurality of spray heads (3) are evenly arranged at the lower end of the mounting frame (2), the spray heads (3) are connected to the water pipe (4), and the size of the mounting frame (2) is larger than the outer diameter of the cross section of the wine storage tank (1).
3. The automatic spray circulation cooling system for wine tanks according to claim 1 is characterized in that: The temperature measuring component includes a tank internal temperature sensing device and an outer wall temperature sensing device.
4. The automatic spray circulation cooling system for wine tanks according to claim 3 is characterized in that: The in-tank temperature sensing device comprises a temperature probe (11) arranged on the inner wall of the wine storage tank (1), the temperature probe (11) extending into the interior of the wine storage tank (1), the temperature probe (11) being electrically connected to a first temperature transmitter (13), the first temperature transmitter (13) being connected to the outer wall of the wine storage tank (1), and the first temperature transmitter (13) being electrically connected to the control system (10).
5. The automatic spray circulation cooling system for wine tanks according to claim 3 is characterized in that: The outer wall temperature sensing device comprises a linear temperature-sensing strip (12) arranged around the outer wall of the wine storage tank (1), the linear temperature-sensing strip (12) being electrically connected to a second temperature transmitter (14), and the second temperature transmitter being electrically connected to the control system (10).
6. The automatic spray circulation cooling system for wine tanks according to claim 1 is characterized in that: The lower end of the water storage tank (9) is connected to a water storage trough (15), and the water storage trough (15) and the water storage tank (9) are connected to each other and an isolation net (16) for isolating solid impurities is provided; the water pipe (4) is connected to the water storage trough (15).