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Numerical investigation on the generation mechanism of aero-heating of rudder shaft from three-dimensional flow separation and vortices
Lin MY(林明月)1,2; Yang F(杨帆)1,2; Wang C(王春)1,2
发表期刊AIP ADVANCES
2022-04-01
卷号12期号:4页码:13
摘要

The hypersonic flow past a controlled rudder mounted at a gap to the aircraft fuselage is numerically investigated by solving three-dimensional (3D) Reynolds-averaged Navier-Stokes equations. This paper aims to explain the mechanism of production of extreme thermal environment faced by a rudder shaft from the view of physics of flow in the mounting gap. Simulations are conducted at Mach number of 10, and the gap ratio h/delta varies from 0 to 1.42, where h denotes the gap height and delta represents the thickness of the incoming turbulent boundary layer. Topological theory is utilized to identify the separation types. The formation of vortices is traced by extracting volume streamlines in the 3D space. The results indicate that the types of 3D separation appear in the gap shifts from the coexistence of horseshoe-type and tornado-type separations to only horseshoe-type separation that persists with the increase of h/delta. It is found that high heat flux is generated by the high-momentum fluid transported toward the surface by the horseshoe vortices. The tornado-type vortex prevents the incoming flow from arriving at the rudder shaft, which avoids the generation of high heat flux at the center of the rudder shaft. The rate of local heat transfer increases with h/delta as a result of the shrink and disappearance of the tornado-type vortices, which means that the region of low-speed backflow in front of the rudder is reduced and vanished. This study contributes to a clearer understanding of the flow physics in the complex disturbance area. (C) 2022 Author(s).

DOI10.1063/5.0088508
收录类别SCI ; EI
语种英语
WOS记录号WOS:000792498200002
关键词[WOS]BOUNDARY-LAYER INTERACTIONS ; INDUCED SHOCK-WAVE ; SKIN-FRICTION ; SIMULATION ; TOPOLOGY ; SWEPT ; PRESSURE ; MODEL ; SHARP
WOS研究方向Science & Technology - Other Topics ; Materials Science ; Physics
WOS类目Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied
资助项目National Key Research and Development Plan of China[2019YFA0405204] ; National Natural Science Foundation of China[11727901] ; National Natural Science Foundation of China[11532014]
项目资助者National Key Research and Development Plan of China ; National Natural Science Foundation of China
论文分区Q3
力学所作者排名1
RpAuthorWang, Chun
引用统计
被引频次:1[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://dspace.imech.ac.cn/handle/311007/89367
专题高温气体动力学国家重点实验室
作者单位1.Chinese Acad Sci, State Key Lab High Temp Gas Dynam, Beijing 100190, Peoples R China;
2.Univ Chinese Acad Sci, Sch Engn Sci, Beijing 100049, Peoples R China
推荐引用方式
GB/T 7714
Lin MY,Yang F,Wang C. Numerical investigation on the generation mechanism of aero-heating of rudder shaft from three-dimensional flow separation and vortices[J]. AIP ADVANCES,2022,12,4,:13.
APA Lin MY,Yang F,&Wang C.(2022).Numerical investigation on the generation mechanism of aero-heating of rudder shaft from three-dimensional flow separation and vortices.AIP ADVANCES,12(4),13.
MLA Lin MY,et al."Numerical investigation on the generation mechanism of aero-heating of rudder shaft from three-dimensional flow separation and vortices".AIP ADVANCES 12.4(2022):13.
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