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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Moment-based boundary conditions for straight on-grid boundaries in three-dimensional lattice Boltzmann simulations
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Moment-based boundary conditions for straight on-grid boundaries in three-dimensional lattice Boltzmann simulations

机译:三维晶格Boltzmann模拟中直接网格边界的矩基边界条件

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摘要

In this article, moment-based boundary conditions for the lattice Boltzmann method are extended to three dimensions. Boundary conditions for velocity and pressure are explicitly derived for straight on-grid boundaries for the D3Q19 lattice. The method is compared against the bounce-back scheme using both single and two relaxation time collision schemes. The method is verified using classical benchmark test cases. The results show very good agreement with the data found in the literature. It is confirmed from the results that the derived moment-based boundary scheme is of second-order accuracy in grid spacing and does not produce numerical slip, and therefore offers a transparent way of accurately prescribing velocity and pressure boundaries that are aligned with grid points in three-dimensional.
机译:在本文中,格子Boltzmann方法的基于矩的边界条件延伸到三维。 对于D3Q19格的直接网格边界,明确地导出了速度和压力的边界条件。 使用单一和两个弛豫时间碰撞方案比较该方法。 使用经典基准测试用例验证该方法。 结果表明,与文献中的数据吻合非常好。 从结果的结果证实,衍生的时刻基边界方案是网格间距中的二阶精度,并且不会产生数值滑动,因此提供了一种透明的方式,可以准确地规定与网格点对齐的速度和压力边界 三维。

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