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A displacer coupled thermoacoustic cooler driven by heat and electricity
2023-02-05
发表期刊APPLIED THERMAL ENGINEERING (IF:6.1[JCR-2023],5.8[5-Year])
ISSN1359-4311
卷号220
发表状态已发表
DOI10.1016/j.applthermaleng.2022.119641
摘要

A small-scale, heat-driven cooling system is required for the on-site liquefaction of unconventional natural gas in a distributed station. The thermoacoustic cooler has been considered a promising candidate for meeting such demands due to its high reliability and environmental friendliness. However, conventional thermoacoustic systems use a resonance tube to couple the thermoacoustic engine and cooler, which degrades cooling performance due to poor phase-shifting capability and significant power dissipation of the resonance tube. To overcome the limitation, this paper introduces a novel driven by heat and electricity thermoacoustic cooler using displacers to replace the resonance tube, which enables better phase-shifting capability and less power dissipation, thus allowing better cooling performance. Numerical investigation and experimental study are performed on the displacer-coupled thermoacoustic cooler driven by heat and electricity. Firstly, the design method of the displacers is presented based on the acoustic impedance matching principle. Numerical investigations are then conducted to understand the operational characteristics better to explore the axial distribution of critical parameters. The effects of the displacer damping coefficient, operating frequency, and mean pressure are further studied. Experimental investigations are then carried out to understand the impact of operating temperatures on system performance. Experimental results show that the system achieves a record thermal-to-cooling exergy efficiency of 13.4 % and cooling power of 117 W at heating and cooling temperatures of 773 K and 110 K. This represents an over 34 % improvement in efficiency when compared to the previous record-holder thermoacoustic cooler. © 2022 Elsevier Ltd

关键词Cooling Cooling systems Efficiency Electric losses Resonance Thermoacoustics Cooling performance Displacers Heat and electricity Numerical investigations Phase-shifting Power-dissipation Resonance tube Small scale Stirling Thermoacoustic coolers
收录类别EI ; SCOPUS
语种英语
出版者Elsevier Ltd
EI入藏号20224813188545
EI主题词Acoustic impedance
EI分类号641.1 Thermodynamics ; 641.2 Heat Transfer ; 751 Acoustics, Noise. Sound ; 751.2 Acoustic Properties of Materials ; 913.1 Production Engineering ; 931.1 Mechanics
原始文献类型Journal article (JA)
Scopus 记录号2-s2.0-85142725750
来源库Scopus
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/256351
专题物质科学与技术学院_特聘教授组_陈宇林
通讯作者Hu, Jiangfeng; Hu, Jianying
作者单位
1.CAS Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Beijing; 100190, China;
2.ShanghaiTech University, Shanghai; 201210, China;
3.University of Chinese Academy of Sciences, Beijing; 100049, China;
4.Mechanical and Electrical Engineering Division, Karlsruhe Institute of Technology, Karlsruhe; 76344, Germany
第一作者单位上海科技大学
通讯作者单位上海科技大学
推荐引用方式
GB/T 7714
Hu, Jiangfeng,Hu, Jianying,Sun, Yanlei,et al. A displacer coupled thermoacoustic cooler driven by heat and electricity[J]. APPLIED THERMAL ENGINEERING,2023,220.
APA Hu, Jiangfeng.,Hu, Jianying.,Sun, Yanlei.,Xu, Jingyuan.,Jia, Zilong.,...&Gao, Bo.(2023).A displacer coupled thermoacoustic cooler driven by heat and electricity.APPLIED THERMAL ENGINEERING,220.
MLA Hu, Jiangfeng,et al."A displacer coupled thermoacoustic cooler driven by heat and electricity".APPLIED THERMAL ENGINEERING 220(2023).
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