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Numerical simulation of a step-piston type series two-stage pulse tube refrigerator

机译:步进活塞式串联两级脉冲管制冷机的数值模拟

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摘要

A two-stage pulse tube refrigerator has a great advantage in that there are no moving parts at low temperatures. The problem is low theoretical efficiency. In an ordinary two-stage pulse tube refrigerator, the expansion work of the first stage pulse tube is rather large, but is changed to heat. The theoretical efficiency is lower than that of a Stirling refrigerator. A series two-stage pulse tube refrigerator was introduced for solving this problem. The hot end of the regenerator of the second stage is connected to the hot end of the first stage pulse tube. The expansion work in the first stage pulse tube is part of the input work of the second stage, therefore the efficiency is increased. In a simulation result for a step-piston type two-stage series pulse tube refrigerator, the efficiency is increased by 13.8 percent.
机译:两级脉冲管制冷机具有很大的优势,因为在低温下没有活动部件。问题是理论效率低。在普通的两级脉冲管制冷机中,第一级脉冲管的膨胀功相当大,但变为热能。理论效率低于斯特林制冷机。为了解决这个问题,引入了串联的两级脉冲管制冷机。第二级再生器的热端连接到第一级脉冲管的热端。第一级脉冲管中的膨胀功是第二级输入工作的一部分,因此提高了效率。在步进活塞式两级串联脉冲管制冷机的模拟结果中,效率提高了13.8%。

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