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Direct Numerical Simulation of Receptivity and Evolution of Disturbances in Hypersonic Shock Layer over Flat Plate

机译:平板上超音速激波层的接受性和扰动演化的直接数值模拟

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THE problem of receptivity and evolution of disturbances in a viscous hypersonic shock layer on a flat plate is A investigated with help of Direct Numerical Simulation (DNS). The computations are performed at the Mach number M = 21 and the Reynolds number based on the plate length ReL = 1.44 · 105, In recent years, the instability of a hypersonic shock layer excited by artificial and natural disturbances was studied in the experiments [1,2] conducted in the T-327 hypersonic nitrogen wind tunnel of ITAM, Novosibirsk. Numerical simulations in the present work are performed at the same flow parameters as in the above-mentioned experiments and aimed at reproducing the experimental results and further investigation of the mechanisms of receptivity and flow instability at very high Mach numbers.
机译:在直接数值模拟(DNS)的帮助下,研究了平板上粘性高超声速激波层中的扰动性和接受性问题。计算是在马赫数M = 21和基于板长ReL = 1.44·105的雷诺数下进行的。近年来,在实验中研究了由人为和自然扰动激发的高超声速激波层的不稳定性[1 ,2]在新西伯利亚ITAM的T-327高超声速氮风洞中进行。本工作中的数值模拟是在与上述实验相同的流动参数下进行的,旨在再现实验结果,并进一步研究在非常高的马赫数下的接受度和流动不稳定性的机理。

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