首页|超音速两相膨胀分离及制冷液化的研究进展

超音速两相膨胀分离及制冷液化的研究进展

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超音速膨胀降温并结合旋流分离技术是一种新型气体液化分离技术,近年来主要应用于分离多组分气体中的高凝点组分.介绍了超音速旋流分离器的 2 种典型结构;归纳了Laval喷管中凝结相变的理论发展、数值模拟、实验研究和分子模拟 4 个方面内容;对超音速旋流分离器中的激波问题、结构优化进行了分析总结;大量实验及现场应用证明了超音速旋流分离器具有节能环保、无运动部件、无需添加化学药剂等优势,在天然气净化处理等领域已得到广泛应用.下一步研究可从单组分、多组分气体凝结相变机理、提升液化效率等方面入手,促进超音速旋流分离技术在普冷温区、氢氦低温温区的液化及制冷技术应用.
Research Progress in Supersonic Two-phase Separation by Expansion and Refrigeration Liquefaction
Supersonic expansion cooling combined with swirl separation technology is a novel method for gas liquefaction separation that has been mainly employed to separate high freezing point components from multi-component gases in recent years.In this study,two typical structures of supersonic swirl separators are introduced.Thereafter,the theoretical development,numerical simulation,experimental research,and molecular simulation of the condensation phase transformation in the Laval nozzle are summarized.Subsequently,the shockwave problem and structural optimization are analyzed and recapitulated.Numerous experiments and field applications demonstrate the advantages of the device;for example,it saves energy and is environmentally friendly,it has no moving parts,and it eliminates the need to add chemical agents.It has thus been widely used in the field of natural gas purification treatment.Future research can focus on the condensation phase transformation mechanism of single-component and multi-component gases and on improving liquefaction efficiency to promote the application of supersonic swirl separation technology in liquefaction and refrigeration processes,particularly in the refrigeration temperature range and cryogenic temperature range of hydrogen and helium.

supersonic swirl separation deviceLaval nozzleshock wavestructural optimization

陈宝生、曾钰培、邹爱红、罗二仓

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中国科学院理化技术研究所低温工程学重点实验室 北京 100190

中国科学院大学 北京 100049

超音速旋流分离器 Laval喷管 激波 结构优化

国家重点研发计划

2021YFB4000700

2024

制冷学报
中国制冷学会

制冷学报

CSTPCD北大核心
影响因子:0.672
ISSN:0253-4339
年,卷(期):2024.45(5)