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Subgrid-Scale Modeling of Baroclinic Vorticity

机译:斜压涡度的亚网格规模建模

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摘要

Baroclinic torque plays an important role in the dynamics of variable-density flows. Large eddy simulations using Favre-filtered resolved-scale velocities mask the explicit dependence of resolved-scale dynamics on subgrid-scale pressure-gradient-density interactions. The effect of subgrid-scale baroclinic torque on resolved scales is implicitly included in the subgrid-scale stress and subgrid-scale scalar fluxes through the resolved-scale vorticity it generates. LES closure models must therefore incorporate this effect in the computations. We explore the physics of subgrid-scale baroclinic torque within the structural framework of the Stretched-Vortex model. Fine-scale simulations of supersonic flows and direct numerical simulations of variable-density turbulence are investigated. Such flows have regions of active baroclinic torque and serve to set up flow configurations to assess the model.
机译:斜压转矩在变密度流的动力学中起着重要作用。使用Favre滤波的分辨尺度速度进行的大涡模拟掩盖了分辨尺度动力学对子网格尺度压力梯度密度相互作用的显式依赖。亚网格规模斜压力矩对分辨尺度的影响通过其产生的分辨尺度涡度隐含在亚网格尺度应力和亚网格尺度标量通量中。因此,LES封闭模型必须在计算中考虑这种影响。我们在Stretched-Vortex模型的结构框架内探索亚网格规模斜压扭矩的物理学。研究了超声速流动的精细模拟和可变密度湍流的直接数值模拟。这样的流具有有效的斜压转矩区域,并用于建立流配置以评估模型。

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