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Large eddy simulation of thermal driven cavity: Evaluation of sub-grid scale models and flow physics

机译:热驱动腔的大涡模拟:子网格比例模型和流动物理的评估

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摘要

Three eddy-viscosity and one non-eddy-viscosity type sub-grid scale models have been evaluated in large eddy simulations of buoyant turbulent flows in the three-dimensional thermal driven cavity of aspect ratio 4. The eddy-viscosity models considered include the traditional dynamic Smagorinsky model, and the recently developed dynamic Vreman and constant coefficient Sigma models. The non-eddy-viscosity Stretched Vortex model has also been evaluated. A high-order numerical framework has been used for the present LES of buoyant turbulent flows. Excellent comparison to DNS data has been obtained using dynamic Smagorinsky, Sigma and Stretched Vortex models, while more tests are required to ascertain the applicability of the dynamic Vreman model for buoyant turbulent flows. The use of WENO advective scheme for scalars has been established by comparing to results using BQUICK scalar advective scheme. Finally, the flow structure in the thermal cavity has been examined in detail, and features such as inho-mogeneity, wave-vortical interactions, the turbulent kinetic energy budget, and the boundary layer dynamics have been studied. In particular, the near wall behavior of the turbulent shear stress and the turbulent streamwise heat flux has been studied in conjunction with their respective production terms.
机译:在长宽比为4的三维热驱动腔中的浮力湍流的大型涡流模拟中,评估了三种涡流粘度模型和一种非涡流粘度类型的子网格比例模型。动态Smagorinsky模型,以及最近开发的动态Vreman模型和恒定系数Sigma模型。还评估了非涡流粘度拉伸涡流模型。对于浮力湍流的当前LES,已经使用了高阶数值框架。使用动态Smagorinsky,Sigma和Stretched Vortex模型已与DNS数据进行了出色的比较,同时还需要进行更多测试才能确定动态Vreman模型对浮力湍流的适用性。通过与使用BQUICK标量对流方案的结果进行比较,已经确定了将WENO对流方案用于标量。最后,详细研究了热腔中的流动结构,并研究了非均质性,波涡相互作用,湍动能收支和边界层动力学等特征。特别地,已经结合它们各自的生产条件研究了湍流剪切应力和湍流沿流热通量的近壁行为。

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