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Performance of J-T refrigerators operating with mixtures and coiled wire-finned heat exchangers

机译:J-T冰箱的性能与混合物和卷绕线翅片热交换器一起运行

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摘要

Joule-Thomson refrigerators operating with mixtures require heat exchangers with an effectiveness of over 96% for the system to function. The hot (high pressure) stream enters the heat exchanger in a superheated condition and leaves in a subcooled state. The cold (low pressure) stream, on the other hand, enters the heat exchanger in a two-phase state and leaves in a superheated state. The streams undergo a temperature change of over 200 K in the heat exchanger. The above requirements mandate the use of innovative heat transfer surfaces in the heat exchanger. Coiled wire-finned heat exchangers have been employed successfully in this work. In this paper, we present the performance of the J-T refrigerator with two different wire-finned heat exchangers (wire-fin pitches of 8 mm and 12.7 mm) measured in our test stand. About 20 K lower temperature could be obtained when the wire-fin pitch was changed from 12.7 to 8 mm. The exergy efficiency of the refrigerator also improved.
机译:与混合物运行的Joule-Thomson冰箱需要换热器的有效性超过96%的功能。 热(高压)流在过热状态下进入热交换器,并以过冷状态叶。 另一方面,冷(低压)流进入两相状态并以过热状态叶子的热交换器。 料理在热交换器中经历超过200 k的温度变化。 以上要求授权在热交换器中使用创新的传热表面。 在这项工作中成功地采用了盘式翅片热交换器。 在本文中,我们在测试台中展示了J-T冰箱的性能与两个不同的线翅片热交换器(8 mm和12.7 mm的丝翅片间距)。 当丝翅片间距从12.7〜8mm变化时,可以获得约20k的温度。 冰箱的高级效率也得到了改善。

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