Intelligent water-cooling system with automatic adjustment capability
A water-cooling system and automatic adjustment technology, which is used in household appliances, household refrigeration devices, lighting and heating equipment, etc., can solve the problem that the adaptability, structure, size, stability and economy of the water-cooling system cannot meet the diversity and overall structure. Complexity, troublesome disassembly and maintenance, etc., to achieve the effect of facilitating large-scale promotion and application, reducing system volume, and convenient disassembly and maintenance
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Embodiment 1
[0025] see figure 1 , an intelligent water-cooling system with automatic adjustment capability, the water-cooling system is arranged on the main pipeline, the water-cooling system includes a main circulation pump, an air radiator, a filter device, heat dissipation objects and a balance box, the main circulation pump, air The radiator, filtering device, cooling object and balance box are connected through pipelines. The intelligent water cooling system also includes a central processing system and a control system. The air radiator, main circulation pump and balance box are all connected to the central processing system. The whole technical scheme is ingeniously designed, compact in structure and high in working efficiency. In this technical scheme, the main circulation pump and the air radiator have a soft start function, and the motor is controlled by frequency conversion speed regulation in the system, which can realize soft start during the start-up process of the water cool...
Embodiment 2
[0026] Example 2: see figure 1 , as an improvement of the present invention, a main pump outlet water pressure sensor PS1 is arranged between the air radiator and the main circulation pump, and a main pump inlet water pressure sensor PS3 is arranged between the main circulation pump and the balance tank. A water supply pressure sensor PS2 is arranged between the filter device and the cooling object. In this technical solution, pressure closed-loop control is realized, and the pressure data of the main pump outlet pressure sensor PS1, water supply pressure sensor PS2, and main pump inlet pressure sensor PS3 are collected in real time by the central processor to judge the main circulation pump outlet water pressure P1, Whether the water supply pressure P2 of the heat dissipation object, the outlet water pressure of the heat dissipation object or the inlet water pressure P3 of the inlet pump are within the set pressure range during normal operation of the system, if any of the ...
Embodiment 3
[0027] Example 3: see figure 1 , as an improvement of the present invention, a supply water temperature sensor TS1 is arranged between the filter device and the heat dissipation object, and a return water temperature sensor TS2 and a cooling medium flow sensor FS are arranged between the balance box and the heat dissipation object. In this technical solution, the temperature closed-loop control is realized, and the information of the water supply temperature sensor TS1, the return water temperature sensor TS2, and the cooling medium flow sensor FS is collected in real time by the central processing unit to judge the flow rate at this stage and whether the air radiator meets the requirements of carrying. At this time, the heat generated by the heat dissipation object and its temperature are stabilized within a reasonable range; if the supply water temperature (T1) / return water temperature (T2) is higher than the upper limit Tmax of the set ideal temperature area, it means that...
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