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Solid wall and open boundary conditions in hybrid recursive regularized lattice Boltzmann method for compressible flows

机译:混合递归正规化格子Boltzmann方法的固体墙和开放边界条件

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摘要

Complex geometries and open boundaries have been intensively studied in the nearly incompressible lattice Boltzmann method (LBM) framework. Therefore, only few boundary conditions for the high speed fully compressible LBM have been proposed. This paper deals with the definition of efficient boundary conditions for the compressible LBM methods, with the emphasis put on the newly proposed hybrid recursive regularized D3Q19 LBM (HRR-LBM) with applications to compressible aerodynamics. The straightforward simple extrapolation-based far-field boundary conditions, the characteristic boundary conditions, and the absorbing sponge layer approach are extended and estimated in the HRR-LBM for the choice of open boundaries. Moreover, a cut-cell type approach to handle the immersed solid is proposed to model both slip and no-slip wall boundary conditions with either isothermal or adiabatic behavior. The proposed implementations are assessed considering the simulation of (i) isentropic vortex convection with subsonic to supersonic inflow and outflow conditions, (ii) two-dimensional (2D) compressible mixing layer, (iii) steady inviscid transonic flow over a National Advisory Committee for Aeronautics (NACA) 0012 airfoil, (iv) unsteady viscous transonic flow over a NACA 0012 airfoil, and (v) three-dimensional (3D) transonic flows over a German Aerospace Center (DLR) F6 full aircraft configuration.
机译:在几乎不可压缩的格子Boltzmann方法(LBM)框架中,复杂的几何和开放边界已经集中研究。因此,已经提出了高速完全可压缩LBM的几个边界条件。本文涉及可压缩LBM方法的有效边界条件的定义,重点在新提出的混合递归正规化D3Q19 LBM(HRR-LBM)上,具有可压缩空气动力学。基于简单的外推的远场边界条件,特征边界条件和吸收海绵层方法在HRR-LBM中延伸和估计,以选择开放边界。此外,提出了一种处理浸渍固体的切割细胞类型方法,以模拟具有等温或绝热行为的滑动和空隙壁边界条件。考虑到(i)模拟(i)血管流入和流出条件,(ii)二维(2D)可压缩混合层,(iii)在国家咨询委员会(II)稳定的INCISCID跨型流量)的模拟航空(NACA)0012翼型,(IV)在NACA 0012翼型上的不稳定粘性跨型流动,(V)三维(3D)跨音流过德国航空航天中心(DLR)F6全架飞机配置。

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    《Physics of fluids》 |2019年第12期|共14页
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  • 正文语种 eng
  • 中图分类 流体力学;
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