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Formulation of the k-ω Turbulence Model Revisited

机译:再谈k-ω湍流模型的制定

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This paper presents a reformulated version of the author's k-ω model of turbulence. Revisions include the addition of just one new closure coefficient and an adjustment to the dependence of eddy viscosity on turbulence properties. The result is a significantly improved model that applies to both boundary layers and free shear flows and that has very little sensitivity to finite freestream boundary conditions on turbulence properties. The improvements to the k-ω model facilitate a significant expansion of its range of applicability. The new model, like preceding versions, provides accurate solutions for mildly separated flows and simple geometries such as that of a backward-facing step. The model's improvement over earlier versions lies in its accuracy for even more complicated separated flows. This paper demonstrates the enhanced capability for supersonic flow into compression corners and a hypersonic shock-wave/ boundary-layer interaction. The excellent agreement is achieved without introducing any compressibility modifications to the turbulence model.
机译:本文提出了作者的湍流k-ω模型的新形式。修订内容包括仅增加一个新的封闭系数,并调整涡流粘度对湍流特性的依赖性。结果是一个显着改进的模型,该模型适用于边界层和自由剪切流,并且对湍流特性对有限自由流边界条件的敏感性很小。 k-ω模型的改进有助于其适用范围的显着扩展。与以前的版本一样,新模型为轻度分离的流和简单的几何形状(例如向后的步骤)提供了精确的解决方案。与早期版本相比,该模型的改进之处在于它对于更复杂的分离流的准确性。本文展示了超音速流进入压缩角和高超音速冲击波/边界层相互作用的增强功能。无需在湍流模型中引入任何可压缩性修改即可获得出色的一致性。

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