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Modeling rotation and curvature effects within scalar eddy viscosity model framework

机译:在标量涡粘度模型框架内建模旋转和曲率效应

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摘要

Two approaches to incorporate the effects of rotation and curvature in scalar eddy viscosity models are explored. One is the "Modified coefficients approach" - to parameterize the model coefficients such that the growth rate of turbulent kinetic energy is suppressed or enhanced. The other is the "Bifurcation approach" - to parameterize the eddy viscosity coefficient such that the equilibrium solution bifurcates from healthy to decaying solution branches. Simple, yet, predictive models in each of these two approaches are proposed and validated on some benchmark test cases characterized by profound effects of system rotation and/or streamline curvature. The results obtained with both the models are encouraging.
机译:探索了将旋转和曲率影响纳入标量涡流粘度模型的两种方法。一种是“修正系数法”-参数化模型系数,以便抑制或增强湍动能的增长率。另一种是“分叉法”-参数化涡流粘度系数,以使平衡溶液从健康溶液分支到腐烂溶液分支。在这两种方法中的每一种中,都提出了简单但可预测的模型,并在一些基准测试用例上进行了验证,这些基准测试用例具有系统旋转和/或流线曲率的深刻影响。通过两个模型获得的结果令人鼓舞。

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