Cold storage tank convenient for temperature regulation
By using partitions to separate the cavity, solenoid valve to control the water flow, the rotating roller stirring blade and the refrigeration component in the cooling tank, the problem of insufficient temperature control accuracy caused by the water temperature difference in the second cavity of the cooling tank is solved, and precise temperature control and cost reduction are achieved.
Patent Information
- Application Number
- CN202422426450.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-09
AI Technical Summary
In the prior art, the water temperature difference in the second cavity of the cooling tank results in insufficient temperature control accuracy, especially when partial cooling water is required, the cost increases and the effect is poor.
The tank body is divided into a first cavity and a second cavity by a solenoid valve, and the water flow is controlled by combining the rotating roller, agitating blade and a refrigeration component to realize the stirring and temperature control of water. The temperature measurement component is used to monitor the temperature and stop the refrigeration component working to ensure the water temperature balance.
It effectively solves the accuracy problem of water temperature control, reduces the cost of cooling, and improves the accuracy and efficiency of temperature control.
Smart Images

Figure CN223153674U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cold storage tanks, in particular to a cold storage tank convenient for temperature adjustment. Background Art
[0002] With the rapid development of data centers, as an essential device for disaster recovery backup in data centers, the demand for emergency cooling devices is also increasing day by day. Horizontal cold storage tanks are commonly used emergency cooling equipment in data centers. The cold storage tank has only one cavity. When a small amount of water at different temperatures is needed, the water inside the entire cold storage tank needs to be changed, which increases the cold storage cost and has a poor cold storage effect.
[0003] To solve the above technical problems, a patent document with the publication number (CN221264305U) discloses a temperature adjustment device and a cold storage tank, including components such as a tank body, a partition board, a liquid level sensor, a temperature sensor, a one-way solenoid valve, and a temperature adjustment component. The partition board is arranged inside the tank body, and the tank body is divided into a first cavity and a second cavity. A connecting pipe is connected to the bottom end of the partition board, and a one-way solenoid valve is installed on the connecting pipe. A liquid level sensor and a temperature sensor are also installed inside the second cavity. The liquid level sensor is electrically connected to the one-way solenoid valve, and the water inlet pipe is connected to the first cavity, and the water outlet pipe is connected to the second cavity. Through the setting of the partition board, the cold storage tank can be divided into two cavities, so that the water in the two cavities can be separated, and it is not necessary to change the stability of all the water, reducing the cold storage cost and the cold storage time.
[0004] However, in the above prior art, when cooling the water in the second cavity, since the water is stationary, there is a temperature difference in the water in the second cavity, which affects the accuracy of water temperature control. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a cold storage tank convenient for temperature adjustment, aiming to solve the technical problem that in the prior art, when cooling the water in the second cavity, since the water is stationary, there is a temperature difference in the water in the second cavity, which affects the accuracy of water temperature control.
[0006] To achieve the above object, a cold storage tank for facilitating temperature adjustment according to the present utility model includes a tank body and a cold storage mechanism. The cold storage mechanism includes a partition plate, a solenoid valve, a water inlet pipe, a water outlet pipe, a rotating roller, multiple stirring blades, two limiting rings, a driven wheel, a support assembly, a driving assembly, a refrigeration assembly, a temperature measuring assembly, and two groups of observation assemblies. The partition plate is fixedly connected to the tank body and is located inside the tank body. The partition plate divides the tank body into a first cavity and a second cavity. The solenoid valve penetrates through the partition plate and is fixedly connected to the partition plate. The water inlet pipe penetrates through the tank body and communicates with the first cavity. The water outlet pipe penetrates through the tank body and communicates with the second cavity. The rotating roller penetrates through the tank body and is rotatably connected to the tank body. The two limiting rings are both sleeved on the outer side of the rotating roller and are respectively attached to the tank body. The multiple stirring blades are all fixedly connected to the rotating roller. The driven wheel is fixedly connected to the rotating roller and is located at one end of the rotating roller. The refrigeration assembly and the temperature measuring assembly are both arranged inside the second cavity. The support assembly is arranged below the tank body. The driving assembly is used to drive the driven wheel to rotate. The two groups of observation assemblies are symmetrically arranged on the outer side of the tank body.
[0007] Among them, the support assembly includes two support plates and a bottom plate. One ends of the two support plates are respectively fixedly connected to the tank body, and the other ends of the two support plates are respectively fixedly connected to the bottom plate.
[0008] Among them, the driving assembly includes a mounting plate, a motor, a driving wheel, and a belt. The mounting plate is fixedly connected to the upper surface of the bottom plate. The motor is arranged on one side of the mounting plate. The output end of the motor penetrates through the mounting plate and is fixedly connected to the driving wheel. The belt is respectively sleeved on the outer sides of the driving wheel and the driven wheel.
[0009] Among them, the refrigeration assembly includes a refrigerator and a liquid cooling pipe. The refrigerator is fixedly connected to the tank body and is located outside the tank body. The liquid cooling pipe is arranged inside the second cavity. Two ends of the liquid cooling pipe respectively penetrate through the tank body and are fixedly connected to the refrigerator.
[0010] Among them, the temperature measuring assembly includes a temperature sensor and a probe. The temperature sensor is fixedly connected to the outer side of the tank body. One end of the probe is fixedly connected to the temperature sensor. The other end of the probe penetrates through the tank body and is inserted into the second cavity.
[0011] Among them, each group of observation assemblies includes a mounting frame and a transparent plate. The mounting frame penetrates through the tank body and is fixedly connected to the tank body. The transparent plate is arranged inside the mounting frame.
[0012] Among them, the cold storage tank for facilitating temperature adjustment further includes a moving component, and the moving component includes two connecting rods, a grip rod, and a plurality of rollers. The plurality of rollers are all arranged on the lower surface of the bottom plate. One end of each of the two connecting rods is fixedly connected to the bottom plate, and the other end of each of the two connecting rods is fixedly connected to the grip rod.
[0013] Among them, the moving component further includes an anti-slip sleeve, and the anti-slip sleeve is sleeved on the outer side of the grip rod.
[0014] In a cold storage tank for facilitating temperature adjustment of the present utility model, the partition divides the tank body into a first cavity and a second cavity. The rotating roller penetrates through the tank body, and both of the two limiting rings are sleeved on the outer side of the rotating roller. The plurality of stirring blades are all fixedly connected to the rotating roller, and the driven wheel is fixedly connected to the rotating roller. When specifically in use, normal temperature water is added into the first cavity through the water inlet pipe. When partial cooling water is needed, the solenoid valve is opened, so that the water in the first cavity flows into the second cavity, and then the solenoid valve is closed. Then, the water in the second cavity is cooled by the refrigeration component. At the same time, the driven wheel is driven to rotate by the driving component. The driven wheel drives the rotating roller to rotate, and the rotating roller drives the plurality of stirring blades to rotate, so as to stir the water in the second cavity, so that the water temperature in the second cavity is kept balanced. The water temperature in the second cavity is measured by the temperature measuring component. When the temperature reaches the requirement, the refrigeration component stops working, and then the cooled water is discharged from the water outlet pipe for use. By this method, it can effectively solve the problem in the prior art that when the water in the second cavity is cooled, due to the water being static, there is a temperature difference in the water in the second cavity, thus affecting the accuracy of water temperature control. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0016] Figure 1 is a schematic structural diagram of the first embodiment of the present utility model.
[0017] Figure 2 is a perspective view of the first embodiment of the present utility model.
[0018] Figure 3 is an overall structural sectional view of the first embodiment of the present utility model.
[0019] Figure 4 It is a schematic structural diagram of the second embodiment of the present utility model.
[0020] 101 - Tank body, 102 - First cavity, 103 - Second cavity, 104 - Partition board, 105 - Solenoid valve, 106 - Water inlet pipe, 107 - Water outlet pipe, 108 - Roller, 109 - Stirring blade, 110 - Limiting ring, 111 - Driven wheel, 112 - Support plate, 113 - Bottom plate, 114 - Mounting plate, 115 - Motor, 116 - Driving wheel, 117 - Belt, 118 - Refrigerator, 119 - Liquid cooling pipe, 120 - Temperature sensor, 121 - Probe, 122 - Mounting frame, 123 - Transparent plate, 201 - Connecting rod, 202 - Holding rod, 203 - Roller, 204 - Anti-slip sleeve. Detailed implementation manners
[0021] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0022] The first embodiment of the present application is as follows:
[0023] Please refer to Figures 1 to 3 where Figure 1 is a schematic structural diagram of the first embodiment of the present utility model, Figure 2 is a perspective view of the first embodiment of the present utility model, Figure 3 is an overall structural sectional view of the first embodiment of the present utility model.
[0024] The present utility model provides a cold storage tank convenient for temperature adjustment, including a tank body 101 and a cold storage mechanism. The cold storage mechanism includes a partition board 104, a solenoid valve 105, a water inlet pipe 106, a water outlet pipe 107, a roller 108, multiple stirring blades 109, two limiting rings 110, a driven wheel 111, a support assembly, a driving assembly, a refrigeration assembly, a temperature measurement assembly, and two groups of observation assemblies. The support assembly includes two support plates 112 and a bottom plate 113. The driving assembly includes a mounting plate 114, a motor 115, a driving wheel 116, and a belt 117. The refrigeration assembly includes a refrigerator 118 and a liquid cooling pipe 119. The temperature measurement assembly includes a temperature sensor 120 and a probe 121. Each group of the observation assemblies includes a mounting frame 122 and a transparent plate 123. The foregoing solution solves the problem in the prior art that when the water in the second cavity is cooled, since the water is stationary, there is a temperature difference in the water in the second cavity, thus affecting the accuracy of water temperature control.
[0025] For this specific embodiment, the partition plate 104 is fixedly connected to the tank body 101 and is located inside the tank body 101. The partition plate 104 divides the tank body 101 into a first cavity 102 and a second cavity 103. The solenoid valve 105 penetrates through the partition plate 104 and is fixedly connected to the partition plate 104. The water inlet pipe 106 penetrates through the tank body 101 and communicates with the first cavity 102. The water outlet pipe 107 penetrates through the tank body 101 and communicates with the second cavity 103. The roller 108 penetrates through the tank body 101 and is rotatably connected to the tank body 101. Both of the limiting rings 110 are sleeved on the outer side of the roller 108 and are respectively in contact with the tank body 101. Multiple stirring blades 109 are all fixedly connected to the roller 108. The driven wheel 111 is fixedly connected to the roller 108 and is located at one end of the roller 108. The refrigeration component and the temperature measuring component are both arranged inside the second cavity 103. The supporting component is arranged below the tank body 101. The driving component is used to drive the driven wheel 111 to rotate. Two groups of the observation components are symmetrically arranged on the outer side of the tank body 101. When specifically in use, normal temperature water is added into the first cavity 102 through the water inlet pipe 106. When partial cooling water is needed, the solenoid valve 105 is opened to enable the water in the first cavity 102 to flow into the second cavity 103, and then the solenoid valve 105 is closed. Then, the water in the second cavity 103 is cooled by the refrigeration component. At the same time, the driving component drives the driven wheel 111 to rotate. The driven wheel 111 drives the roller 108 to rotate. The roller 108 drives multiple stirring blades 109 to rotate, so as to stir the water in the second cavity 103 and make the water temperature in the second cavity 103 balanced. The water temperature in the second cavity 103 is measured by the temperature measuring component. When the temperature reaches the requirement, the refrigeration component stops working. Then, the cooled water is discharged through the water outlet pipe 107 for use.
[0026] Wherein, one ends of the two support plates 112 are respectively fixedly connected to the tank body 101, and the other ends of the two support plates 112 are respectively fixedly connected to the bottom plate 113. When specifically in use, the tank body 101 and the bottom plate 113 are fixed through the two support plates 112, so as to support the tank body 101.
[0027] Secondly, the mounting plate 114 is fixedly connected to the upper surface of the bottom plate 113. The motor 115 is disposed on one side of the mounting plate 114. The output end of the motor 115 penetrates through the mounting plate 114 and is fixedly connected to the driving wheel 116. The belt 117 is sleeved on the outer sides of the driving wheel 116 and the driven wheel 111 respectively. When in actual use, start the motor 115, the output end of the motor 115 drives the driving wheel 116 to rotate, and the driving wheel 116 drives the driven wheel 111 to rotate through the belt 117.
[0028] Meanwhile, the cooler 118 is fixedly connected to the tank body 101 and is located outside the tank body 101. The liquid cooling pipe 119 is disposed inside the second cavity 103. Both ends of the liquid cooling pipe 119 penetrate through the tank body 101 and are fixedly connected to the cooler 118. When in actual use, start the cooler 118 to enable the coolant to circulate inside the liquid cooling pipe 119, so as to perform heat exchange with the water in the second cavity 103.
[0029] In addition, the temperature sensor 120 is fixedly connected to the outside of the tank body 101. One end of the probe 121 is fixedly connected to the temperature sensor 120, and the other end of the probe 121 penetrates through the tank body 101 and is inserted into the second cavity 103. When in actual use, the temperature of the water in the second cavity 103 is measured by the temperature sensor 120 and the probe 121.
[0030] Meanwhile, the mounting frame 122 penetrates through the tank body 101 and is fixedly connected to the tank body 101. The transparent plate 123 is disposed inside the mounting frame 122. When in actual use, the mounting frame 122 is used to mount the transparent plate 123, and the water levels in the first cavity 102 and the second cavity 103 can be conveniently observed through the two transparent plates 123 respectively.
[0031] Using a cold storage tank for convenient temperature adjustment according to this embodiment, when in specific use, normal temperature water is added into the first cavity 102 through the water inlet pipe 106. When partial cooling water is needed, the solenoid valve 105 is opened, so that the water in the first cavity 102 flows into the second cavity 103. Then the solenoid valve 105 is closed, and then the refrigerator 118 is started, so that the coolant circulates inside the liquid cooling pipe 119, thereby performing heat exchange with the water in the second cavity 103. At the same time, the motor 115 is started. The output end of the motor 115 drives the driving wheel 116 to rotate. The driving wheel 116 drives the driven wheel 111 to rotate through the belt 117. The driven wheel 111 drives the roller 108 to rotate. The roller 108 drives multiple stirring blades 109 to rotate, thereby stirring the water in the second cavity 103 to keep the water temperature in the second cavity 103 balanced. The temperature of the water in the second cavity 103 is measured by the temperature sensor 120 and the probe 121. When the temperature reaches the requirement, the refrigerator 118 stops working, and then the cooled water is discharged through the water outlet pipe 107 for use. By this method, it can effectively solve the problem in the prior art that when cooling the water in the second cavity, since the water is static, there is a temperature difference in the water in the second cavity, thus affecting the accuracy of water temperature control.
[0032] The second embodiment of this application is as follows:
[0033] Based on the first embodiment, please refer to Figure 4 , Figure 4 which is a schematic structural diagram of the second embodiment of the present utility model.
[0034] The present utility model provides a cold storage tank for convenient temperature adjustment, which further includes a moving component. The moving component includes two connecting rods 201, a grip rod 202 and a plurality of rollers 203. The moving component further includes an anti-slip sleeve 204.
[0035] For this specific embodiment, a plurality of the rollers 203 are all arranged on the lower surface of the bottom plate 113. One ends of the two connecting rods 201 are respectively fixedly connected to the bottom plate 113. The other ends of the two connecting rods 201 are respectively fixedly connected to the grip rod 202. When in specific use, the grip rod 202 is pushed, and the grip rod 202 drives the bottom plate 113 to move through the two connecting rods 201, and makes the plurality of rollers 203 rotate.
[0036] Wherein, the anti-slip sleeve 204 is sleeved on the outer side of the grip rod 202. When in specific use, the friction of the grip rod 202 can be enhanced through the anti-slip sleeve 204.
[0037] When using a cold storage tank for convenient temperature adjustment according to this embodiment, during specific use, push the grip rod 202. The grip rod 202 drives the bottom plate 113 to move through the two connecting rods 201, and makes the plurality of rollers 203 rotate, so as to facilitate the movement of the tank body 101.
[0038] The above-disclosed is only a preferred embodiment of the present invention. Of course, it cannot be used to limit the scope of the rights of the present invention. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. A cold storage tank for facilitating temperature adjustment, comprising a tank body, characterized in that, it further comprises a cold storage mechanism, the cold storage mechanism includes a partition board, a solenoid valve, a water inlet pipe, a water outlet pipe, a rotating roller, multiple stirring blades, two limiting rings, a driven wheel, a support assembly, a driving assembly, a refrigeration assembly, a temperature measuring assembly and two groups of observation assemblies. The partition board is fixedly connected to the tank body and is located inside the tank body. The partition board divides the tank body into a first cavity and a second cavity. The solenoid valve penetrates through the partition board and is fixedly connected to the partition board. The water inlet pipe penetrates through the tank body and communicates with the first cavity. The water outlet pipe penetrates through the tank body and communicates with the second cavity. The rotating roller penetrates through the tank body and is rotatably connected to the tank body. The two limiting rings are both sleeved on the outer side of the rotating roller and are respectively attached to the tank body. The multiple stirring blades are all fixedly connected to the rotating roller. The driven wheel is fixedly connected to the rotating roller and is located at one end of the rotating roller. The refrigeration assembly and the temperature measuring assembly are both arranged inside the second cavity. The support assembly is arranged below the tank body. The driving assembly is used to drive the driven wheel to rotate. The two groups of observation assemblies are symmetrically arranged on the outer side of the tank body.
2. The cold storage tank for facilitating temperature adjustment according to claim 1, characterized in that, the support assembly includes two support plates and a bottom plate. One ends of the two support plates are respectively fixedly connected to the tank body, and the other ends of the two support plates are respectively fixedly connected to the bottom plate.
3. The cold storage tank for facilitating temperature adjustment according to claim 2, characterized in that, the driving assembly includes a mounting plate, a motor, a driving wheel and a belt. The mounting plate is fixedly connected to the upper surface of the bottom plate. The motor is arranged on one side of the mounting plate. The output end of the motor penetrates through the mounting plate and is fixedly connected to the driving wheel. The belt is respectively sleeved on the outer sides of the driving wheel and the driven wheel.
4. The cold storage tank for facilitating temperature adjustment according to claim 3, characterized in that, the refrigeration assembly includes a refrigerator and a liquid cooling pipe. The refrigerator is fixedly connected to the tank body and is located outside the tank body. The liquid cooling pipe is arranged inside the second cavity. Two ends of the liquid cooling pipe respectively penetrate through the tank body and are fixedly connected to the refrigerator.
5. The cold storage tank for facilitating temperature adjustment according to claim 4, characterized in that, the temperature measuring assembly includes a temperature sensor and a probe. The temperature sensor is fixedly connected to the outer side of the tank body. One end of the probe is fixedly connected to the temperature sensor. The other end of the probe penetrates through the tank body and is inserted into the second cavity.
6. The cold storage tank for facilitating temperature adjustment according to claim 5, characterized in that, each group of observation assemblies includes a mounting frame and a transparent plate. The mounting frame penetrates through the tank body and is fixedly connected to the tank body. The transparent plate is arranged inside the mounting frame.
7. The cold storage tank for facilitating temperature adjustment according to claim 6, characterized in that, The cold storage tank for facilitating temperature adjustment further includes a moving component, and the moving component includes two connecting rods, a grip rod and a plurality of rollers. A plurality of the rollers are all arranged on the lower surface of the bottom plate. One ends of the two connecting rods are respectively fixedly connected to the bottom plate, and the other ends of the two connecting rods are respectively fixedly connected to the grip rod.
8. The cold storage tank for facilitating temperature adjustment according to claim 7, wherein the moving component further includes an anti-slip sleeve, and the anti-slip sleeve is sleeved on the outer side of the grip rod.
Citation Information
Patent Citations
Temperature adjusting device and cold storage tank
CN221264305U