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三维可压缩非定常流的壁面分离判据及其分离线附近的流动形态
引用本文:张涵信,张树海,田浩,张来平,李沁.三维可压缩非定常流的壁面分离判据及其分离线附近的流动形态[J].空气动力学学报,2012,30(4):421-428,430,463.
作者姓名:张涵信  张树海  田浩  张来平  李沁
作者单位:1. 中国空气动力研究与发展中心,四川绵阳621000;国家CFD实验室,北京100191
2. 中国空气动力研究与发展中心,四川绵阳621000;空气动力学国家重点实验室,四川绵阳621000
3. 中国空气动力研究与发展中心,四川绵阳,621000
基金项目:国家自然科学基金资助(91016001)
摘    要:通过引入依赖于密度的物面法向速度变换wr=-1/ρh1h2∫ozh1h2(e)ρ/(e)tdz,描述物理速度空间(ua,va,wa=u,v,w+wr)具有无滑移壁面条件的三维可压缩非定常连续方程可转换成变换速度空间(u,v,w)内具有无滑移条件定常连续方程.因此,采用定常壁面分离的分析方法和结论,再通过变换和研究wr的贡献,给出了三维可压缩非定常壁面分离的判则以及分离线附近的流动形态.研究指出,二维和三维情况下,都出现伴有壁外附着的壁面分离情况.数值模拟证实了理论和结论.

关 键 词:可压缩非定常流动  壁面分离  分离流面  分离判则

Separation on fixed surface for three dimensional compressible unsteady flows
ZHANG Han-xin , ZHANG Shu-hai , TIAN Hao , ZHANG Lai-ping , LI Qin.Separation on fixed surface for three dimensional compressible unsteady flows[J].Acta Aerodynamica Sinica,2012,30(4):421-428,430,463.
Authors:ZHANG Han-xin  ZHANG Shu-hai  TIAN Hao  ZHANG Lai-ping  LI Qin
Institution:1(1.China Aerodynamics Research and Development Center,Mianyang Sichuan 621000,China;2.National Laboratory of Computational Fluid Dynamics,Beijing 100191,China;3.State Key Laboratory of Aerodynamics,Mianyang Sichuan 621000,China)
Abstract:Through introducing a transformation for the density related velocity component wr=1 ρh1h∫2 z 0h 1h2ρt dzon the direction normal to wall,the continuous equation of three dimensional unsteady compressible flow in physical space(ua,va,wa=u,v,w+wr)with no-slip wall condition can be transformed to an equation for the steady flow in the transformed velocity space(u,v,w)with no-slip wall.Then,using the same analysing method and corresponding result of the steady flow separation,the criteria for the compressible unsteady flow can be obtained after considering the contribution of wr.It is found that there is a case that flow separates on wall and reattaches off wall in both two dimensional and three dimensional flow.The analysing results have been proved by numerical simulation.
Keywords:compressible unsteady flow  wall separation  separation surface  criteria of flow separation  
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