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IMMERSION COOLER, IMMERSION COOLING SYSTEM, AND CONTROL METHOD OF IMMERSION COOLER

机译:浸没冷却器,浸没冷却系统和浸没冷却器的控制方法

摘要

PROBLEM TO BE SOLVED: To increase cooling efficiency of refrigerant in a refrigerant tank.SOLUTION: An immersion cooler 20 includes a refrigerant tank 24 containing first refrigerant W1 for immersing a high heat generation electronic component 46, a liquid-cooled jacket 52 provided in the high heat generation electronic component 46, and cooling the high heat generation electronic component 46 with second refrigerant W2 flowing therein, a supply pipe 54A provided in the refrigerant tank 24, immersed in the first refrigerant W1 and supplying the second refrigerant W2 to the liquid-cooled jacket 52 from the outside of the refrigerant tank 24, an exhaust pipe 54B provided in the refrigerant tank 24, immersed in the first refrigerant W1 and exhausting the second refrigerant W2 that has flown in the liquid-cooled jacket 52, to the outside of the refrigerant tank 24, and a liquid current generator 60 for flowing the first refrigerant W1 in the refrigerant tank 24.SELECTED DRAWING: Figure 2
机译:解决的问题:为了提高制冷剂箱中制冷剂的冷却效率。解决方案:浸入式冷却器20包括制冷剂箱24,该制冷剂箱24包含用于浸没高热产生电子部件46的第一制冷剂W1,在该制冷剂箱中设置有液冷套52。高热量产生电子元件46,并在其中流动有第二制冷剂W2的情况下冷却高热量产生电子元件46,供应管54A设置在制冷剂箱24中,浸没在第一制冷剂W1中,并将第二制冷剂W2供给至液体-冷却套52从制冷剂箱24的外部,设置在制冷剂箱24中的排气管54B浸没在第一制冷剂W1中,并将在液冷套52中流动的第二制冷剂W2排出到外部。制冷剂箱24,以及使第一制冷剂W1在制冷剂箱24中流动的液流发生器60。

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