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首页> 外文期刊>Advances in Mechanical Engineering >Numerical Investigation of Wall Cooling and Suction Effects on Supersonic Flat-Plate Boundary Layer Transition Using Large Eddy Simulation:
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Numerical Investigation of Wall Cooling and Suction Effects on Supersonic Flat-Plate Boundary Layer Transition Using Large Eddy Simulation:

机译:使用大涡模拟的超声冷却平板边界层过渡壁冷却和吸力效应的数值研究:

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摘要

Reducing friction resistance and aerodynamic heating has important engineering significance to improve the performances of super/hypersonic aircraft, so the purpose of transition control and turbulent drag reduction becomes one of the cutting edges in turbulence research. In order to investigate the influences of wall cooling and suction on the transition process and fully developed turbulence, the large eddy simulation of spatially evolving supersonic boundary layer transition over a flat-plate with freestream Mach number 4.5 at different wall temperature and suction intensity is performed in the present work. It is found that the wall cooling and suction are capable of changing the mean velocity profile within the boundary layer and improving the stability of the flow field, thus delaying the onset of the spatial transition process. The transition control will become more effective as the wall temperature decreases, while there is an optimal wall suction intensity under the given conditions. Moreover, t...
机译:降低摩擦阻力和空气动力加热对提高超人/超人飞机的性能具有重要的工程意义,因此过渡控制和减少湍流阻力的目的成为湍流研究的前沿技术之一。为了研究壁冷却和吸力对过渡过程和充分发展的湍流的影响,在自由壁马赫数为4.5的平板上,在不同壁温和吸力下,对空间超声速边界层过渡进行了大涡模拟。在目前的工作中。已经发现,壁的冷却和抽吸能够改变边界层内的平均速度分布并改善流场的稳定性,从而延迟了空间过渡过程的开始。当壁温降低时,过渡控制将变得更加有效,同时在给定条件下具有最佳的壁吸强度。而且...

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