IMECH-IR  > 空天飞行高温气动全国重点实验室
Effect of wall temperature on the kinetic energy transfer in a hypersonic turbulent boundary layer
Xu DH(许得豪)1; Wang JC(王健春)2; Wan MP(万敏平)2; Yu ZP(于长平)3; Li XL(李新亮)3; Chen SY(陈十一)2
Source PublicationJournal of Fluid Mechanics (IF:3.137[JCR-2018],3.496[5-Year])
2021
Volume929Issue:929Pages:A33
ISSN0022-1120
Abstract

The effect of wall temperature on the transfer of kinetic energy in a hypersonic turbulent boundary layer for different Mach numbers and wall temperature ratios is studied by direct numerical simulation. A cold wall temperature can enhance the compressibility effect in the near-wall region through increasing the temperature gradient and wall heat flux. It is shown that the cold wall temperature enhances the local reverse transfer of kinetic energy from small scales to large scales, and suppresses the local direct transfer of kinetic energy from large scales to small scales. The average filtered spatial convection and average filtered viscous dissipation are dominant in the near-wall region, while the average subgrid-scale flux of kinetic energy achieves its peak value in the buffer layer. It is found that the wall can suppress the inter-scale transfer of kinetic energy, especially for the situation of a cold wall. A strong local reverse transfer of fluctuating kinetic energy is identified in the buffer layer in the inertial range. Helmholtz decomposition is applied to analyse the compressibility effect on the subgrid-scale flux of kinetic energy. A strong transfer of the solenoidal component of fluctuating kinetic energy is identified in the buffer layer, while a significant transfer of the dilatational component of fluctuating kinetic energy is observed in the near-wall region. It is also shown that compression motions have a major contribution to the direct transfer of fluctuating kinetic energy, while expansion motions play a marked role in the reverse transfer of fluctuating kinetic energy.

DOI10.1017/jfm.2021.875
Indexed BySCI ; EI
Language英语
WOS IDWOS:000721289200001
Classification一类/力学重要期刊
Ranking3+
Contributor王健春,陈十一
Citation statistics
Cited Times:45[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/87687
Collection空天飞行高温气动全国重点实验室
Corresponding AuthorWang JC(王健春); Chen SY(陈十一)
Affiliation1.北京大学;
2.南方科技大学;
3.中国科学院力学研究所
Recommended Citation
GB/T 7714
Xu DH,Wang JC,Wan MP,et al. Effect of wall temperature on the kinetic energy transfer in a hypersonic turbulent boundary layer[J]. Journal of Fluid Mechanics,2021,929,929,:A33.
APA Xu DH,Wang JC,Wan MP,Yu ZP,Li XL,&Chen SY.(2021).Effect of wall temperature on the kinetic energy transfer in a hypersonic turbulent boundary layer.Journal of Fluid Mechanics,929(929),A33.
MLA Xu DH,et al."Effect of wall temperature on the kinetic energy transfer in a hypersonic turbulent boundary layer".Journal of Fluid Mechanics 929.929(2021):A33.
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