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非结构混合网格高雷诺数流动计算中一种改进的LU-SGS隐式格式(英文)
引用本文:王刚,蒋跃文,叶正寅.非结构混合网格高雷诺数流动计算中一种改进的LU-SGS隐式格式(英文)[J].中国航空学报,2012,25(1):33-41.
作者姓名:王刚  蒋跃文  叶正寅
作者单位:西北工业大学翼型叶栅空气动力学重点实验室
基金项目:National Natural Science Foundation of China(10802067)
摘    要:The lower-upper symmetric Gauss-Seidel (LU-SGS) implicit relaxation has been widely used because it has the merits of less dependency on grid topology,low numerical complexity and modest memory require...

关 键 词:LU-SGS格式  非结构混合网格  Navier-Stokes方程  通量雅克比  收敛特性  湍流
收稿时间:2011-02-28;

An Improved LU-SGS Implicit Scheme for High Reynolds Number Flow Computations on Hybrid Unstructured Mesh
WANG Gang , JIANG Yuewen , YE Zhengyin.An Improved LU-SGS Implicit Scheme for High Reynolds Number Flow Computations on Hybrid Unstructured Mesh[J].Chinese Journal of Aeronautics,2012,25(1):33-41.
Authors:WANG Gang  JIANG Yuewen  YE Zhengyin
Institution:National Key Laboratory of Science and Technology on Aerodynamic Design and Research, Northwestern Polytechnical University, Xi'an 710072, China
Abstract:The lower-upper symmetric Gauss-Seidel (LU-SGS) implicit relaxation has been widely used because it has the merits of less dependency on grid topology, low numerical complexity and modest memory requirements. In original LU-SGS scheme, the implicit system matrix is constructed based on the splitting of convective flux Jacobian according to its spectral radius. Although this treatment has the merit of reducing computational complexity and helps to ensure the diagonally dominant property of the implicit system matrix, it can also cause serious distortions on the implicit system matrix because too many approximations are introduced by this splitting method if the contravariant velocity is small or close to sonic speed. To overcome this shortcoming, an improved LU-SGS scheme with a hybrid construction method for the implicit system matrix is developed in this paper. The hybrid way is that: on the cell faces having small contravariant velocity or transonic contravariant velocity, the accurate derivative of the convective flux term is used to construct more accurate implicit system matrix, while the original Jacobian splitting method is adopted on the other cell faces to reduce computational complexity and ensure the diagonally dominant property of the implicit system matrix. To investigate the convergence performance of the improved LU-SGS scheme, 2D and 3D turbulent flows around the NACA0012 airfoil, RAE2822 airfoil and LANN wing are simulated on hybrid unstructured meshes. The numerical results show that the improved LU-SGS scheme is significantly more efficient than the original LU-SGS scheme.
Keywords:LU-SGS scheme  hybrid unstructured mesh  Navier-Stokes equations  flux Jacobian  convergence performance  turbulent flow
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