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Modeling the Effects of System Rotation on the Turbulent Scalar Fluxes

机译:模拟系统旋转对湍流标量通量的影响

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摘要

A proposal for modeling the effects of system rotation on the turbulent scalar fluxes is presented. It is based on extension to rotating frames of an explicit algebraic model derived using tensor-representation theory. The model is formulated to allow for the turbulent scalar fluxes to depend on the details of the turbulence field and on the gradients of both the mean-velocity and the scalar. Such dependence, which is absent from conventional models, is required by the exact equations governing the transport of the scalar fluxes. The model's performance is assessed, both a priori and by actual computations, by comparisons with results from recent direct numerical simulations (DNS) of flows in heated channels rotated about their streamwise, spanwise, and wall-normal axes. To place the new model's performance in context, additional comparisons are made with predictions obtained from three alternative models, namely, the conventional gradient-transport model, a model that is implicit in the scalar fluxes derived by simplification of the modeled transport equations for the scalar fluxes, and a differential scalar-flux transport model. The results show that the present model yields predictions that are substantially in better agreement with the DNS results than the algebraic models, and which are indistinguishable from those obtained with the more complex differential model. However, important differences remain and reasons for these are discussed.
机译:提出了对系统旋转对湍流标量通量的影响进行建模的建议。它基于对使用张量表示理论导出的显式代数模型的旋转框架的扩展。该模型的制定使湍流标量通量取决于湍流场的细节以及平均速度和标量的梯度。控制标量通量传输的精确方程式需要常规模型中不存在的这种依赖性。通过与最近的直接数值模拟(DNS)的结果进行比较,评估模型的性能,包括先验结果和实际计算结果,这些结果是围绕加热通道沿流向,展向和壁法向轴旋转的流动。为了将新模型的性能放在上下文中,与从三个替代模型获得的预测进行了额外的比较,这三个模型是常规的梯度传输模型,该模型隐含在标量通量中,该通量通过简化标量的建模输运方程而得出通量和微分标量通量传输模型。结果表明,与代数模型相比,本模型所产生的预测与DNS结果具有更好的一致性,并且与较复杂的差分模型所获得的预测没有区别。但是,仍然存在重要差异,并讨论了产生这些差异的原因。

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