首页> 外文期刊>Computers & mathematics with applications >Lattice Boltzmann simulation for unsteady shock wave/boundary layer interaction in a shock tube
【24h】

Lattice Boltzmann simulation for unsteady shock wave/boundary layer interaction in a shock tube

机译:Lattice Boltzmann仿真在冲击管中的非稳态冲击波/边界层相互作用

获取原文
获取原文并翻译 | 示例

摘要

In this paper, lattice Boltzmann simulation for unsteady shock wave/boundary layer interaction in a shock tube is presented. This kind of problem, which contains the typical characteristics of supersonic viscous flows with shock wave and boundary layer, has rarely been well validated in the lattice Boltzmann community. This leads to few application of lattice Boltzmann method in supersonic flows with boundary layer. Some problems related to numerical dissipation and stability are exposed when simulating shock wave/boundary layer interaction using the conventional compressible lattice Boltzmann approach. The implementations of lattice Boltzmann for this kind of flow are investigated. As a novel problem for the lattice Boltzmann method, three main issues need to be addressed carefully, i.e., lattice Boltzmann model, solving scheme, and boundary treatment. For the first issue, a double-distribution-function compressible lattice Boltzmann model, in which the lattice velocity is studied for the stability in the simulation, is employed since we have demonstrated its feasibility in supersonic viscous flow previously. For the solving scheme, various space discretization methods are tested to enhance numerical performance. Meanwhile, the boundary treatment for the ghost layer is studied. The simulation result by the improved lattice Boltzmann implementation agrees well with the results through Navier-Stokes equations and gas-kinetic scheme reported in previous literatures. This work probes the numerical implementations of lattice Boltzmann method for unsteady shock wave/boundary layer interaction, providing important theoretical support for lattice Boltzmann application in supersonic viscous flows with shock wave and boundary layer. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了对冲击管中不稳定的冲击波/边界层相互作用的晶格Boltzmann模拟。这种问题,其中包含具有冲击波和边界层的超音速粘性流动的典型特性,很少在格子Boltzmann社区中得到很好的验证。这导致Lattice Boltzmann方法在具有边界层的超音速流中的少量应用。使用传统的可压缩格子Boltzmann方法模拟冲击波/边界层相互作用时暴露出与数值耗散和稳定性有关的一些问题。研究了格子Boltzmann的实施方式。作为格子Boltzmann方法的新问题,需要仔细解决三个主要问题,即格子Boltzmann模型,解决方案和边界治疗。对于第一个问题,采用了一种双分配功能可压缩格子Boltzmann模型,其中对模拟中的稳定性研究了晶格速度,因为我们已经在先前证明了其在超音速粘性流动中的可行性。对于求解方案,测试各种空间离散化方法以增强数值性能。同时,研究了鬼层的边界处理。改进的格子Boltzmann实施的仿真结果与通过在以前的文献中报告的Navier-Stokes方程和燃气动力学方案的结果一致。这项工作探测了晶格Boltzmann方法的数值实现,用于非定常冲击波/边界层相互作用,为具有冲击波和边界层的超音速粘性流动的晶格Boltzmann应用提供了重要的理论支持。 (c)2020 elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号