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Turbulent jet computations based on MRT and Cascaded Lattice Boltzmann models

机译:基于MRT和级联格子Boltzmann模型的湍流射流计算

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In this contribution a numerical study of a turbulent jet flow is presented. The simulation results of two different variants of the Lattice Boltzmann method (LBM) are compared. The first is the well-established D3Q19 MRT model extended by a Smagorinsky Large Eddy Simulation (LES) model. The second is the D3Q27 Factorized Cascaded Lattice Boltzmann (FCLB) model without any additional explicit turbulence model. For this model no studies of turbulent flow with high resolution on nonuniform grids existed so far. The underlying computational procedure uses a time nested refinement technique and a grid with more than a billion DOF. The simulations were conducted with the parallel multi physics solver VirtualFluids. It is shown that both models are feasible for the present flow case, but the FCLB outperforms the traditional approach in some aspects.
机译:在此贡献中,给出了湍流射流的数值研究。比较了Lattice Boltzmann方法(LBM)的两个不同变体的仿真结果。第一个是建立完善的D3Q19 MRT模型,并通过Smagorinsky大涡模拟(LES)模型进行了扩展。第二个是D3Q27因式分解的级联格子玻尔兹曼(FCLB)模型,没有任何其他显式湍流模型。对于该模型,到目前为止,还没有关于非均匀网格上高分辨率的湍流研究。基本的计算过程使用时间嵌套精炼技术和具有超过十亿个自由度的网格。使用并行多物理场求解器VirtualFluids进行了仿真。结果表明,这两种模型对于当前的流量情况都是可行的,但是FCLB在某些方面优于传统方法。

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