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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Computation of boundary layer transition using low-Reynolds-number turbulence models
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Computation of boundary layer transition using low-Reynolds-number turbulence models

机译:使用低雷诺数湍流模型计算边界层过渡

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摘要

A literature review shows that, for the commonly used turbulence models, the predicted location of boundary layer transition is very sensitive to the initial profiles of turbulence quantities and starting location of calculation. To eliminate these effects, two independent solution approaches are proposed: (1) to solve the boundary layer equations over a flat plate with the starting location of calculation very close to the leading edge of the plate, and (2) to solve the elliptic Navier-Stokes equations over the whole plate, including the leading edge and some region upstream of it. Computations show both approaches lead to identical results. Three well-known low-Reynolds-number (LRN) turbulence models are evaluated with respect to the transition on a flat plate. None of the models are able to predict the quantitative aspects of transition correctly without an ad hoc adjustment. A satisfactory new turbulence model is presented in a companion paper. [References: 24]
机译:文献综述表明,对于常用的湍流模型,边界层过渡的预测位置对湍流量的初始分布和计算的起始位置非常敏感。为了消除这些影响,提出了两种独立的解决方法:(1)在计算的起始位置非常靠近平板前端的情况下求解平板上的边界层方程,以及(2)解决椭圆Navier -Stokes方程遍及整个板块,包括前沿和上游的某些区域。计算表明,两种方法均会得出相同的结果。关于平板上的过渡,评估了三个众所周知的低雷诺数(LRN)湍流模型。没有临时调整,所有模型都无法正确预测转变的定量方面。伴随论文中提出了令人满意的新湍流模型。 [参考:24]

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