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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Direct numerical simulation of decaying two-dimensional turbulence in a no-slip square box using smoothed particle hydrodynamics
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Direct numerical simulation of decaying two-dimensional turbulence in a no-slip square box using smoothed particle hydrodynamics

机译:使用光滑粒子流体动力学的无滑动方箱中二维湍流衰减的直接数值模拟

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摘要

This paper explores the application of SPH to a DNS of decaying turbulence in a two-dimensional noslip wall-bounded domain. In this bounded domain, the inverse energy cascade, and a net torque exerted by the boundary, results in a spontaneous spin-up of the fluid, leading to a typical end state of a large monopole vortex that fills the domain. The SPH simulations were compared against published results using a high-accuracy pseudo-spectral code. Ensemble averages of the kinetic energy, enstrophy and average vortex wavenumber compared well against the pseudo-spectral results, as did the evolution of the total angular momentum of the fluid. However, although the pseudo-spectral results emphasised the importance of the noslip boundaries as generators of long-lived coherent vortices in the flow, no such generation was seen in the SPH results. Vorticity filaments produced at the boundary were always dissipated by the flow shortly after separating from the boundary layer. The kinetic energy spectrum of the SPH results was calculated using an SPH Fourier transform that operates directly on the disordered particles. The ensemble kinetic energy spectrum showed the expected k~(-3) scaling over most of the inertial range. However, the spectrum flattened at smaller length scales (initially less than 7.5 particle spacings and growing in size over time), indicating an excess of small-scale kinetic energy.
机译:本文探讨了SPH在二维无刷墙边界域中的湍流DNS中的应用。在这个有界域中,能量逆级联以及边界施加的净转矩导致流体自发向上旋转,从而导致一个大的单极涡流的典型最终状态充满该域。使用高精度伪谱码将SPH仿真与已发布的结果进行了比较。动能,总涡旋和平均涡旋波数的集合平均值与伪谱结果相比,流体的总角动量的演化也很好。但是,尽管伪谱结果强调了鼻滑边界作为流动中长寿命相干涡流发生器的重要性,但在SPH结果中没有看到这种产生。从边界层分离后不久,在边界处产生的涡流丝总是被气流消散。使用直接在无序粒子上运行的SPH傅里叶变换来计算SPH结果的动能谱。集合动能谱显示了在大部分惯性范围内预期的k〜(-3)标度。但是,光谱在较小的长度尺度上变平(最初小于7.5个粒子间距,并且随着时间的推移尺寸逐渐增大),表明存在小规模的动能过多。

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