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Direct Numerical Simulation of Transient Growth on a Flat Plate at Mach 3

机译:3马赫平板上瞬态生长的直接数值模拟

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The transient growth phenomenon in three dimensional shear flows has been shown to account for large disturbance growth in cases where traditional stability analyses show limited or no growth. For this reason, transient growth has been put forward as a potential cause of bypass transition. The purpose of the current study is to investigate the presence of non-linear effects as the energy of disturbances increases and their potential role in boundary layer transition on a flat plate in supersonic, compressible flow. An optimal disturbance solver based on linear theory was created and is validated against previously published data. The disturbances generated by this solver are input into a computational fluid dynamics (CFD) solver to model the disturbance evolution in three dimensions. The results from the CFD solver are compared with linear theory to ensure accuracy in the full three-dimensional simulations. Finally, the input energies are increased to investigate the effects of non-linear terms in the governing equations. Results show that a non-dimensional input energy of E_(in) = 3.024 · 10~(-3) is required for a departure from linear behavior for the mean flow conditions considered.
机译:在传统的稳定性分析显示增长有限或没有增长的情况下,三维剪切流中的瞬态增长现象已被证明是造成较大扰动增长的原因。因此,提出了瞬态增长作为旁路过渡的潜在原因。当前研究的目的是研究当扰动能量增加时非线性效应的存在及其在超声速,可压缩流中平板边界层过渡中的潜在作用。创建了基于线性理论的最佳干扰求解器,并针对先前发布的数据进行了验证。由该求解器生成的扰动被输入到计算流体力学(CFD)求解器中,以在三个维度上对扰动演化进行建模。将CFD求解器的结果与线性理论进行比较,以确保完整的三维模拟的准确性。最后,增加输入能量以研究控制方程中非线性项的影响。结果表明,对于所考虑的平均流量条件,偏离线性行为需要E_(in)= 3.024·10〜(-3)的无量纲输入能量。

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