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首页> 外文期刊>Physical review, E >General curved boundary treatment for two- and three-dimensional stationary and moving walls in flow and nonflow lattice Boltzmann simulations
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General curved boundary treatment for two- and three-dimensional stationary and moving walls in flow and nonflow lattice Boltzmann simulations

机译:用于流动和非流动晶格玻璃模拟的两维固定和移动墙壁的一般弯曲边界处理

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摘要

The aim of this study is to introduce a general approach to implement curved boundaries in lattice Boltzmann simulations. The main idea is to determine boundary values by extrapolating macroscopic properties from some reference points inside the computational domain. The introduced approach is based on a unified extrapolation equation that can be employed for any macroscopic value (flow and nonflow properties) in arbitrary two- and three-dimensional geometries. In the case of nonflow simulations, the present treatment can easily apply Dirichlet and Neumann boundary conditions. By introducing a point cloud description of geometry, the new treatment can handle any complex geometry that is modeled by a CAD program. The application of the new treatment is also extended to moving boundaries, by developing a novel force calculation method. The proposed boundary treatment is tested against several well-established problems and the order of accuracy of solutions is evaluated. Numerical results show that the present treatment is of second-order accuracy with respect to the grid spacing in flow simulations, and it leads to a significant enhancement in nonflow simulations as well.
机译:本研究的目的是引入一般方法来实现晶格Boltzmann模拟中的弯曲边界。主要思想是通过从计算域内的一些参考点推断宏观特性来确定边界值。引入的方法基于统一的外推方程,其可以用于任意的两维几何形状中的任何宏观值(流量和非流程)。在非流出模拟的情况下,本治疗可以容易地应用Dirichlet和Neumann边界条件。通过引入几何形状的点云描述,新的处理可以处理由CAD程序建模的任何复杂几何体。通过开发一种新的力计算方法,新治疗的应用还扩展到移动边界。针对几个良好的问题测试了所提出的边界处理,评估解决方案的准确性顺序。数值结果表明,目前的处理是关于流动模拟中的网格间距的二阶精度,也导致非流模拟的显着增强。

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