湍流
Kε湍流模型
湍流模型
K-omega湍流模型
比例(比率)
统计物理学
比例模型
直接数值模拟
物理
数学
航空航天工程
机械
应用数学
雷诺平均Navier-Stokes方程
工程类
量子力学
出处
期刊:AIAA Journal
[American Institute of Aeronautics and Astronautics]
日期:1988-11-01
卷期号:26 (11): 1299-1310
被引量:2224
摘要
A comprehensive and critical review of closure approximations for two-equation turbulence models has been made. Particular attention has focused on the scale-determining equation in an attempt to find the optimum choice of dependent variable and closure approximations. Using a combination of singular perturbation methods and numerical computations, this paper demonstrates that: 1) conventional A:-e and A>w formulations generally are inaccurate for boundary layers in adverse pressure gradient; 2) using functions'' tends to mask the shortcomings of such models; and 3) a more suitable choice of dependent variables exists that is much more accurate for adverse pressure gradient. Based on the analysis, a two-equation turbulence model is postulated that is shown to be quite accurate for attached boundary layers in adverse pressure gradient, compressible boundary layers, and free shear flows. With no viscous damping of the model's closure coefficients and without the aid of wall functions, the model equations can be integrated through the viscous sublayer. Surface boundary conditions are presented that permit accurate predictions for flow over rough surfaces and for flows with surface mass addition.
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