期刊
APPLIED THERMAL ENGINEERING
卷 144, 期 -, 页码 65-70出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.applthermaleng.2018.08.042
关键词
Stirling engine; Radiation shields; Displacer; Emissivity; Radiation heat loss
资金
- United States Department of Energy, ARPA-E [DE-AR0000864]
- DOE ARPA-E
The implementation of radiation shields in the displacer assembly of a Stirling. engine is an effective way to reduce heat transfer losses. A FEA approach with ANSYS Workbench was utilized to determine the steady-state temperature profile throughout a displacer assembly, as well as the heat transfer from the hot end to the cold end of the displacer to optimize the position of the radiation shields. The results show that the surface finish is a critical aspect of reducing radiation losses since the higher emissivity cases resulted in higher displacer body temperatures and total heat flux to displacer body compared to the lower emissivity cases with the same number of shields and positioning. Even a single shield is capable of significantly reducing the radiation losses present in the displacer. The results also suggest it is more effective to place the shields uniformly along the entire length of the displacer cap. The results also demonstrated that there exits an optimal number of radiation shields that has the lease heat losses.
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