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LES of turbulent square jet flow using an MRT lattice Boltzmann model

机译:使用MRT格子Boltzmann模型的湍流方形射流LES

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摘要

In this paper we consider the application of multiple-relaxation-time (MRT) lattice Boltzmann equation (LBE) for large-eddy simulation (LES) of turbulent flows. The implementation is discussed in the context of 19-velocity (D3Q19) MRT-LBE model in conjunction with the Smagorinsky subgrid closure model. The MRT-LBE-LES is then tested in the turbulent square jet flow case. We compare MRT-LBE-LES results with (a) single-relaxation-time (SRT) or BGK LBE results and (b) experimental data. Computed results include the distribution of centerline mean streamwise velocity, jet spread, and spanwise profiles of mean streamwise velocity in the near-field region. The phenomenon of axis switching is investigated. The advantages of MRT over SRT are demonstrated. Reasonable agreement between our numerical results and experimental data demonstrate that the MRT-LBE is a potentially viable tool for LES of turbulence.
机译:在本文中,我们考虑了多重弛豫时间(MRT)格子Boltzmann方程(LBE)在湍流大涡模拟(LES)中的应用。在19速度(D3Q19)MRT-LBE模型和Smagorinsky子网格闭合模型的上下文中讨论了该实现。然后,在湍流的方形射流箱中对MRT-LBE-LES进行测试。我们将MRT-LBE-LES结果与(a)单弛豫时间(SRT)或BGK LBE结果以及(b)实验数据进行比较。计算结果包括近场区域中线平均水流速度,射流扩展和平均水流速度的展向分布。研究了轴切换现象。证明了MRT优于SRT的优势。我们的数值结果和实验数据之间的合理一致性表明,MRT-LBE是解决LES湍流的潜在可行工具。

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