Laws of turbulence decay from direct numerical simulations.

John Panickacheril John, Diego A Donzis, Katepalli R Sreenivasan
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引用次数: 2

Abstract

Inspection of available data on the decay exponent for the kinetic energy of homogeneous and isotropic turbulence (HIT) shows that it varies by as much as 100%. Measurements and simulations often show no correspondence with theoretical arguments, which are themselves varied. This situation is unsatisfactory given that HIT is a building block of turbulence theory and modelling. We take recourse to a large base of direct numerical simulations and study decaying HIT for a variety of initial conditions. We show that the Kolmogorov decay exponent and the Birkhoff-Saffman decay are both observed, albeit approximately, for long periods of time if the initial conditions are appropriately arranged. We also present, for both cases, other turbulent statistics such as the velocity derivative skewness, energy spectra and dissipation, and show that the decay and growth laws are approximately as expected theoretically, though the wavenumber spectrum near the origin begins to change relatively quickly, suggesting that the invariants do not strictly exist. We comment briefly on why the decay exponent has varied so widely in past experiments and simulations. This article is part of the theme issue 'Scaling the turbulence edifice (part 1)'.

湍流规律从直接数值模拟中衰减。
对均匀和各向同性湍流(HIT)动能衰减指数的现有资料的检查表明,它的变化高达100%。测量和模拟结果往往与理论论证不一致,理论论证本身也各不相同。这种情况是不令人满意的,因为HIT是湍流理论和建模的基石。我们利用大量的直接数值模拟,研究了各种初始条件下的HIT衰减。我们表明,如果初始条件适当安排,Kolmogorov衰减指数和Birkhoff-Saffman衰减都可以观察到,尽管是近似的,长时间的。对于这两种情况,我们还提出了其他湍流统计数据,如速度导数偏度,能量谱和耗散,并表明衰减和增长规律近似于理论上所期望的,尽管在原点附近的波数谱开始相对较快地变化,这表明不变量并不严格存在。我们简要地评论了为什么衰减指数在过去的实验和模拟中变化如此之大。这篇文章是主题“攀登湍流大厦(第一部分)”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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