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The parabolised stability equations for 3D-flows: implementation and numerical stability

机译:3D流动的抛物线稳定性方程:实现和数值稳定性

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摘要

The numerical implementation of the parabolised stability equations (PSE) using a spectral/hp-element discretisation is considered, and the numerical stability of the governing equations is presented. Analogous to the primitive variable form of the two-dimensional PSE, the equations are ill-posed; although choosing an Euler implicit scheme in the streamwise z-direction yields a stable scheme for sufficiently large step sizes ( △z > 1/|β|, where β is the streamwise wavenumber). The source of the instability is a residual ellipticity that remains in the equations, and presents itself as an upstream propagating acoustic wave. Neglecting this term relaxes the lower limit on the step-size restriction. The θ-scheme is also considered, allowing the step-size restriction of the scheme to be determined. The explicit scheme is always unstable, whereas neglecting the pressure gradient term shows stable eigenspectra for θ ≥ 0.5.
机译:考虑了使用谱/ hp元素离散化的抛物线稳定性方程(PSE)的数值实现,并给出了控制方程的数值稳定性。类似于二维PSE的原始变量形式,这些方程是不适定的。尽管在流向z方向选择Euler隐式方案对于足够大的步长(△z> 1 / |β|,其中β是流向波数)会产生稳定的方案。不稳定性的来源是方程中保留的残余椭圆率,并以上游传播的声波的形式呈现出来。忽略该术语将放宽步长限制的下限。还考虑了θ方案,可以确定方案的步长限制。显式方案总是不稳定的,而忽略压力梯度项会显示出θ≥0.5时的稳定本征谱。

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