Outdoor equipment heat dissipation system and method
By using centrifugal atomization cooling execution unit and phase change atomization main control unit in the outdoor equipment cooling system, intelligent adjustment and efficient heat dissipation are achieved, solving the problems of traditional systems such as large size, low heat dissipation efficiency, high maintenance costs and poor environmental adaptability.
Patent Information
- Application Number
- CN202510342961.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-24
AI Technical Summary
Traditional outdoor equipment cooling systems have problems such as large volume and weight, low heat dissipation efficiency, high maintenance costs and poor environmental adaptability.
The centrifugal atomization cooling execution unit and the phase change atomization main control unit are used to monitor the equipment temperature through the dynamic phase change adjustment unit, intelligently adjust the supply of cooling water, and use the atomization execution module to atomize and spray the cooling water to achieve efficient heat dissipation.
It significantly improves heat dissipation efficiency, reduces equipment volume and weight, reduces maintenance costs and operation complexity, and operates stably in various outdoor climate conditions, extending the service life of the equipment.
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Figure CN120201691A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of outdoor equipment heat dissipation, and specifically to an outdoor equipment heat dissipation system and method. Background Technique
[0002] Currently, the heat dissipation of outdoor equipment usually relies on traditional water cooling or air cooling technologies. The water cooling system absorbs the heat generated by the equipment through circulating water, while the air cooling system uses a fan to promote air flow to carry away the heat. However, these traditional heat dissipation methods have several deficiencies:
[0003] Equipment volume and weight limitations: Traditional water cooling systems require a large water tank and pump, which increases the overall volume and weight of the equipment and limits its application in outdoor environments with limited space.
[0004] Heat dissipation efficiency issues: The heat dissipation efficiency of the air cooling system significantly decreases under high temperature or windless conditions, while the water cooling system may have poor heat dissipation effects due to the increase in water temperature.
[0005] Maintenance cost and complexity: The water cooling system needs to regularly replace the cooling water and clean the water tank, and the air cooling system needs to regularly clean the dust on the fan and heat sink, which all increase the maintenance cost and operation complexity.
[0006] Poor environmental adaptability: Under the changeable outdoor climate conditions, traditional heat dissipation systems may not be able to adapt to extreme temperature, humidity or sandstorm environments, thus affecting the stable operation and lifespan of the equipment.
[0007] Therefore, based on the above technical problems, it is necessary for those skilled in the art to develop an outdoor equipment heat dissipation system and method. Summary of the Invention
[0008] The purpose of the present invention is to provide an outdoor equipment heat dissipation system and method to solve the problems raised in the above background technique.
[0009] To achieve the above purpose, the present invention provides the following technical solutions:
[0010] A technical solution for an outdoor equipment heat dissipation system includes a phase change atomization main control unit and a centrifugal atomization cooling execution unit connected to the phase change atomization main control unit. The phase change atomization main control unit is provided with a power interface module, a serial port signal module, a terminal controller, and a conveying and distribution pump;
[0011] The centrifugal atomization cooling execution unit includes a dynamic phase change regulation unit 1 and a dynamic phase change regulation unit 2. A temperature sensor 1 is connected to the dynamic phase change regulation unit 1 through a cable, and a temperature sensor 2 is connected to the dynamic phase change regulation unit 2 through a cable. A delivery pump is arranged on the adjacent side of the dynamic phase change regulation unit 1. The output end of the delivery pump is connected to two groups of solenoid valves through a tee. The output ends of the two groups of solenoid valves are connected to a water supply pipe. The end of the water supply pipe is connected to a water pipe joint, and an atomization execution module is installed on the water pipe joint.
[0012] As a preferred technical solution, the power interface module is used to connect to an external power supply to provide power support for the entire heat dissipation system; the serial port signal module is used for data transmission with external devices to realize remote monitoring and control functions; the terminal controller serves as the control center of the entire heat dissipation system, and precisely regulates each component according to the received signals and data; the delivery and distribution pump is responsible for pumping cooling water from the water source and delivering it to the centrifugal atomization cooling execution unit.
[0013] As a preferred technical solution, the centrifugal atomization cooling execution unit further includes a power conversion module. The power conversion module is used to connect to the input power supply. Input signals are electrically connected to both the dynamic phase change regulation unit 1 and the dynamic phase change regulation unit 2. The input signals are connected to the serial port signal module and are used to receive and process control instructions from external devices.
[0014] As a preferred technical solution, the dynamic phase change regulation unit 1 and the dynamic phase change regulation unit 2 respectively monitor the temperatures of different parts of the equipment according to the received input signals, and control the opening and closing of the delivery pump according to the preset temperature thresholds, thereby regulating the supply of cooling water.
[0015] As a preferred technical solution, a manual valve is arranged on the top of the delivery pump. The manual valve is used to connect to the water source inlet pipe and is normally open.
[0016] As a preferred technical solution, the dynamic phase change regulation unit 1 and the dynamic phase change regulation unit 2 are connected to the solenoid valves and are used to open and close the solenoid valves. The cooling water is delivered to the water pipe joint through the solenoid valves and is finally atomized and ejected by the atomization execution module to achieve efficient heat dissipation.
[0017] An outdoor equipment heat dissipation method includes the following steps:
[0018] S1: Connect to an external power supply through the power interface module to provide power support for the entire heat dissipation system, and perform data transmission with external devices through the serial port signal module to realize remote monitoring and control;
[0019] S2: As the control center, the terminal controller precisely regulates each component according to the received signals and data, starts the conveying and distribution pump to extract cooling water from the water source, and conveys it to the centrifugal atomization cooling execution unit;
[0020] S3: The dynamic phase change regulation unit 1 and the dynamic phase change regulation unit 2 monitor the temperatures of different parts of the equipment respectively according to the received input signals, and control the opening and closing of the conveying pump according to the preset temperature thresholds, thereby regulating the supply of cooling water;
[0021] S4: The conveying pump conveys the cooling water through a tee to two groups of solenoid valves. The dynamic phase change regulation unit 1 and the dynamic phase change regulation unit 2 are connected to the solenoid valves and are used to open and close the solenoid valves, and convey the cooling water to the water pipe joint through the solenoid valves;
[0022] S5: The atomization execution module atomizes and sprays out the cooling water conveyed by the water pipe joint to achieve efficient heat dissipation.
[0023] Compared with the prior art, the beneficial effects of the present invention are:
[0024] The present invention relates to a heat dissipation system and method for outdoor equipment. The centrifugal atomization cooling execution unit is set up to monitor the equipment temperature through the dynamic phase change regulation unit, intelligently regulate the supply of cooling water, and use the atomization execution module to atomize and spray out the cooling water, effectively improving the heat dissipation efficiency. Compared with the traditional heat dissipation method, the present invention has significant advantages:
[0025] The centrifugal atomization cooling execution unit has a compact structure, does not require a large water tank and pump, significantly reduces the overall volume and weight of the equipment, and is more suitable for outdoor environments with limited space.
[0026] The atomization execution module atomizes and sprays out the cooling water, increasing the heat dissipation area, and can maintain efficient heat dissipation even under high temperature or windless conditions, avoiding the problem of reduced heat dissipation efficiency of the traditional air-cooled system.
[0027] The present invention adopts an intelligent control system, reduces the need for manual intervention and regular maintenance, and reduces the maintenance cost and operation complexity.
[0028] The centrifugal atomization heat dissipation method is not affected by the changeable outdoor climate conditions, can operate stably in extreme temperature, humidity or sandstorm environments, and extends the service life of the equipment.
[0029] The present invention provides a heat dissipation system and method for outdoor equipment with high efficiency, intelligence and strong adaptability, and has broad application prospects and market value. Description of the Drawings
[0030] Figure 1 It is a module schematic diagram of a heat dissipation system and method for outdoor equipment;
[0031] Figure 2 Schematic diagram of the phase change atomization main control unit module for an outdoor equipment heat dissipation system and method.
[0032] In the attached drawings: 1. Phase change atomization main control unit; 11. Power interface module; 12. Serial port signal module; 13. Terminal controller; 14. Delivery and distribution pump; 2. Centrifugal atomization cooling execution unit; 21. Manual valve; 211. Water source inlet pipe; 22. Dynamic phase change adjustment unit 1; 221. Temperature sensor 1; 23. Dynamic phase change adjustment unit 2; 231. Temperature sensor 2; 24. Power conversion module; 241. Input power supply; 25. Input signal; 26. Delivery pump; 261. Solenoid valve; 262. Water supply pipe; 27. Water pipe joint; 28. Atomization execution module. Detailed implementation manners
[0033] The features and exemplary embodiments of various aspects of the present invention will be described in detail below. To make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in conjunction with the attached drawings and specific embodiments. For those skilled in the art, the present invention can be implemented without some of these specific details. The following description of the embodiments is only to provide a better understanding of the present invention by showing examples of the present invention.
[0034] As Figure 1 、 Figure 2 shown, the present invention provides a technical solution for an outdoor equipment heat dissipation system: including a phase change atomization main control unit 1 and a centrifugal atomization cooling execution unit 2. Specifically, the phase change atomization main control unit 1 can be flexibly expanded and can be connected to 8 to 16 centrifugal atomization cooling execution units 2. The phase change atomization main control unit 1 is provided with a power interface module 11, a serial port signal module 12, a terminal controller 13 and a delivery and distribution pump 14. The power interface module 11 is used to connect to an external power supply to provide power support for the entire heat dissipation system. The serial port signal module 12 is used for data transmission with external devices to realize remote monitoring and control functions. The terminal controller 13 serves as the control center of the entire heat dissipation system and precisely regulates each component according to the received signals and data. The delivery and distribution pump 14 is responsible for pumping cooling water from the water source and delivering it to the centrifugal atomization cooling execution unit 2.
[0035] The centrifugal atomization cooling execution unit 2 includes two dynamic phase change regulation units 22 and 23. Temperature sensors 221 and 231 are connected to each dynamic phase change regulation unit through cables. A delivery pump 26 is arranged on the adjacent side of the first dynamic phase change regulation unit 22. The output end of the delivery pump 26 is connected to two groups of solenoid valves 261 through a tee. The output ends of the two groups of solenoid valves 261 are connected to a water supply pipe 262. The end of the water supply pipe 262 is connected to a water pipe joint 27, and an atomization execution module 28 is installed on the water pipe joint.
[0036] In the centrifugal atomization cooling execution unit 2, there is also a power conversion module 24 for connecting to an input power supply 241. Input signals 25 are electrically connected to both the first dynamic phase change regulation unit 22 and the second dynamic phase change regulation unit 23. The input signals 25 are connected to the serial port signal module 12 for receiving and processing control instructions from external devices.
[0037] The first dynamic phase change regulation unit 22 and the second dynamic phase change regulation unit 23 monitor the temperatures of different parts of the device according to the received input signals 25, and control the opening and closing of the delivery pump 26 according to preset temperature thresholds, thereby regulating the supply of cooling water.
[0038] A manual valve 21 is arranged on the top of the delivery pump 26. The manual valve 21 is used to connect to a water source inlet pipe 211 and is set to be normally open. The first dynamic phase change regulation unit 22 and the second dynamic phase change regulation unit 23 are connected to the solenoid valves 261 for opening and closing the solenoid valves 261. The cooling water is transported to the water pipe joint 27 through the solenoid valves 261 and finally atomized and ejected by the atomization execution module 28 to achieve efficient heat dissipation.
[0039] The outdoor device heat dissipation method of the present invention includes the following steps:
[0040] S1: Connect to an external power supply through the power interface module 11 to provide power support for the entire heat dissipation system, and perform data transmission with external devices through the serial port signal module 12 to achieve remote monitoring and control;
[0041] S2: The terminal controller 13 serves as a control center, precisely regulates each component according to the received signals and data, starts the delivery and distribution pump 14 to pump cooling water out of the water source, and transports it to the centrifugal atomization cooling execution unit 2;
[0042] S3: The first dynamic phase change regulation unit 22 and the second dynamic phase change regulation unit 23 monitor the temperatures of different parts of the device according to the received input signals 25, and control the opening and closing of the delivery pump 26 according to preset temperature thresholds, thereby regulating the supply of cooling water;
[0043] S4: The transfer pump 26 transports the cooling water through a tee to two groups of solenoid valves 261. The dynamic phase change regulation unit one 22 and the dynamic phase change regulation unit two 23 are connected to the solenoid valves 261 and are used to open and close the solenoid valves 261, and the cooling water is transported to the water pipe joint 27 through the solenoid valves 261.
[0044] S5: The atomization execution module 28 atomizes and sprays out the cooling water transported by the water pipe joint 27 to achieve efficient heat dissipation.
[0045] Through the above implementation manners, the outdoor equipment heat dissipation system and method of the present invention can effectively improve the heat dissipation efficiency, reduce the volume and weight of the equipment, lower the maintenance cost and operation complexity, and stably operate under various outdoor climate conditions, thereby prolonging the service life of the equipment.
[0046] The working principle and usage process of the present invention: After the components of this solution are assembled in sequence, work according to the above respective implementation manners in sequence according to actual requirements, and all working steps can be completed.
[0047] The above is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent replacements or changes, and should be covered within the protection scope of the present invention.
[0048] In the description of the present invention, it should be understood that the orientation or positional relationships indicated by the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inner", "front", "center", "both ends", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to the present invention.
[0049] In the present invention, unless otherwise clearly specified and defined, the terms "installation", "setting", "connection", "fixation", "swivel connection", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two elements or the interaction relationship between two elements. Unless otherwise clearly defined, for those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0050] According to the embodiments of the present invention as described above, these embodiments do not describe all the details in detail, nor limit the invention to only the specific embodiments. Obviously, according to the above description, many modifications and variations can be made. These embodiments are selected and specifically described in this specification in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can make good use of the present invention and its modified use based on the present invention. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A heat dissipation system for outdoor equipment, characterized in that: It comprises a phase change atomization main control unit (1) and a centrifugal atomization cooling execution unit (2) connected to the phase change atomization main control unit (1), wherein the phase change atomization main control unit (1) is provided with a power interface module (11), a serial port signal module (12), a terminal controller (13) and a delivery and distribution pump (14); The centrifugal atomization cooling execution unit (2) comprises a dynamic phase change regulating unit 1 (22) and a dynamic phase change regulating unit 2 (23); the dynamic phase change regulating unit 1 (22) is connected to a temperature sensor 1 (221) via a cable; the dynamic phase change regulating unit 2 (23) is connected to a temperature sensor 2 (231) via a cable; a delivery pump (26) is arranged on an adjacent side of the dynamic phase change regulating unit 1 (22); the output end of the delivery pump (26) is connected to two groups of solenoid valves (261) via a tee; the output ends of the two groups of solenoid valves (261) are connected to water supply pipes (262); the end of the water supply pipe (262) is connected to a water pipe joint (27); and an atomization execution module (28) is installed on the water pipe joint (27).
2. The outdoor equipment heat dissipation system according to claim 1, characterized in that: The power interface module (11) is used to connect to an external power source to provide power support for the entire cooling system; the serial port signal module (12) is used to transmit data with external equipment to realize remote monitoring and control functions; the terminal controller (13) serves as the control center of the entire cooling system and accurately regulates each component according to the received signals and data; the delivery and distribution pump (14) is responsible for extracting cooling water from the water source and delivering it to the centrifugal atomization cooling execution unit (2).
3. The outdoor equipment cooling system according to claim 1, characterized in that: The centrifugal atomization cooling execution unit (2) also includes a power conversion module (24), the power conversion module (24) is used to connect to an input power supply (241), the dynamic phase change adjustment unit 1 (22) and the dynamic phase change adjustment unit 2 (23) are electrically connected to an input signal (25), and the input signal (25) is connected to the serial port signal module (12) for receiving and processing control instructions from an external device.
4. The outdoor equipment heat dissipation system according to claim 3, characterized in that: The dynamic phase change regulating unit 1 (22) and the dynamic phase change regulating unit 2 (23) respectively monitor the temperature of different parts of the equipment according to the received input signal (25), and control the opening and closing of the delivery pump (26) according to the preset temperature threshold, thereby regulating the supply of cooling water.
5. The outdoor equipment heat dissipation system according to claim 4, characterized in that: A manual valve (21) is arranged on the top of the delivery pump (26). The manual valve (21) is used to connect to a water source inlet pipe (211) and is normally open.
6. The outdoor equipment heat dissipation system according to claim 1, characterized in that: The dynamic phase change regulating unit 1 (22) and the dynamic phase change regulating unit 2 (23) are connected to the electromagnetic valve (261) and are used to open and close the electromagnetic valve (261). The cooling water is transported to the water pipe joint (27) through the electromagnetic valve (261) and finally atomized and sprayed out by the atomization execution module (28) to achieve efficient heat dissipation.
7. A heat dissipation method for outdoor equipment according to any one of claims 1 to 6, characterized in that: The following steps are involved: S1: Connecting an external power source through a power interface module (11) to provide power support for the entire cooling system, and performing data transmission with an external device through a serial port signal module (12) to achieve remote monitoring and control; S2: The terminal controller (13) serves as a control center, and accurately controls each component according to the received signals and data, and starts the delivery and distribution pump (14) to extract cooling water from the water source and deliver it to the centrifugal atomization cooling execution unit (2); S3: The dynamic phase change regulating unit 1 (22) and the dynamic phase change regulating unit 2 (23) respectively monitor the temperature of different parts of the equipment according to the received input signal (25), and control the opening and closing of the delivery pump (26) according to the preset temperature threshold, so as to adjust the supply of cooling water; S4: The delivery pump (26) delivers the cooling water to two sets of electromagnetic valves (261) through a three-way connection, the dynamic phase change regulation unit 1 (22), the dynamic phase change regulation unit 2 (23) and connected to the electromagnetic valve (261), for opening and closing the electromagnetic valve (261), and delivering the cooling water to the water pipe joint (27) through the electromagnetic valve (261); S5: The atomization execution module (28) sprays out the cooling water delivered by the water pipe joint (27) in atomized form to achieve efficient heat dissipation.