Design of Thermodynamic Cycle and Cryogenic Turbo Expander for 2 kW Class Brayton Refrigerator

Jin-Woo Lee, C. Lee, Hyeongseok Yang, Seokho Kim
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引用次数: 1

Abstract

The High Temperature Superconducting power cables (HTS power cables) become increasingly longer to commercialize the HTS power cable system. Accordingly, demands on refrigerators of large cooling capacity per a unit system have been increased. In Korea, it is currently imported from abroad with the high price due to insufficient domestic technologies. In order to commercialize the HTS power cables, it is necessary to develop the refrigerators with large cooling capacity. The Brayton refrigerators are composed of recu-perative heat exchangers, compressors and cryogenic turbo expanders. The most directly considering the efficiency of the Brayton refrigerator, it depends on performance of the cryogenic turbo expander. Rotating at high speed in cryogenic temperature, the cryogenic turbo expanders lower temperature by expanding high pressure of a helium or neon gas. In this paper, the reverse Brayton cycle is
2kw级布雷顿制冷机热力循环及低温涡轮膨胀器设计
高温超导电力电缆(High Temperature Superconducting power cable,简称HTS电力电缆)的长度越来越长,以实现高温超导电力电缆系统的商业化。因此,对每单位系统制冷量大的冰箱的需求增加了。目前,由于国内技术不足,只能从国外进口,价格也很高。为了实现高温超导电缆的商业化,有必要开发大制冷量的电冰箱。布雷顿制冷机由回收式热交换器、压缩机和低温涡轮膨胀器组成。低温涡轮膨胀器的性能是影响布雷顿制冷机效率的最直接因素。低温涡轮膨胀器在低温下高速旋转,通过膨胀氦气或氖气的高压来降低温度。在本文中,逆布雷顿周期为
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