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Numerical Simulations of Effects of Micro Vortex Generators Using Immersed-Boundary Methods

机译:浸没边界法对微涡旋发生器影响的数值模拟

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摘要

This work presents an immersed-boundary technique for compressible, turbulent flows and applies the technique to simulate the effects of micro vortex generators in controlling oblique-shock/turbulent boundary-layer interactions. The Reynolds-averaged Navier-Stokes equations, closed using the Menter k-ω turbulence model, are solved in conjunction with the immersed-boundary technique. The approach is validated by comparing solutions obtained using the immersed-boundary technique with solutions obtained on a body-fitted mesh and with experimental laser Doppler anemometry data collected at Cambridge University for Mach 2.5 flow over single micro vortex generators. Simulations of an impinging oblique-shock boundary-layer interaction at Mach 2.5 with and without micro vortex-generator flow control are also performed, considering the development of the flow in the entire wind tunnel. Comparisons are made with experimental laser Doppler anemometry data and surface-pressure measurements from Cambridge University and an analysis of the flow structure is performed. The results show that three dimensional effects initiated by the interaction of the oblique shock with the sidewall boundary layers significantly influence the flow patterns in the actual experiment. The general features of the interactions with and without the micro vortex-generator array are predicted to good accord by the Reynolds-averaged Navier-Stokes/ immersed-boundary model.
机译:这项工作提出了一种可压缩湍流的浸入边界技术,并将该技术应用于模拟微涡发生器在控制斜激波/湍流边界层相互作用中的作用。结合沉浸边界技术求解使用Menterk-ω湍流模型封闭的雷诺平均Navier-Stokes方程。通过将使用浸入边界技术获得的溶液与在人体贴合的网格上获得的溶液以及在剑桥大学针对单个微涡流发生器产生的2.5马赫流量采集的实验性激光多普勒风速仪数据进行比较,验证了该方法的有效性。考虑到整个风洞中气流的发展,在有或没有微涡流发生器流量控制的情况下,还进行了在马赫数为2.5时撞击斜向边界层相互作用的模拟。通过实验激光多普勒风速测量数据和剑桥大学的表面压力测量结果进行了比较,并对流动结构进行了分析。结果表明,在实际实验中,斜向冲击与侧壁边界层相互作用产生的三维效应显着影响了流动模式。通过雷诺平均的Navier-Stokes /浸入边界模型,可以预测在有和没有微涡旋发生器阵列的情况下相互作用的一般特征。

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