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基于人工可压缩方法的后台阶绕流数值模拟 被引量:1
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作者 王家楣 孙富学 《武汉理工大学学报(交通科学与工程版)》 北大核心 2004年第1期66-69,共4页
针对二维后台阶绕流采用人工可压缩方法进行数值模拟 ,方程的离散采用有限体积法 .为了消除离散求解时可能产生的数值振荡 ,在离散方程的右端人为增加四阶人工耗散 .在 Re=45 ,60 ,90等低雷诺数下的数值试验结果表明 ,人工可压缩方法和... 针对二维后台阶绕流采用人工可压缩方法进行数值模拟 ,方程的离散采用有限体积法 .为了消除离散求解时可能产生的数值振荡 ,在离散方程的右端人为增加四阶人工耗散 .在 Re=45 ,60 ,90等低雷诺数下的数值试验结果表明 ,人工可压缩方法和有限体积离散方法联合进行数值模拟的可行性 ;在低 Re的情况下 ,伪可压缩系数 α取小的值会对方程求解的稳定性更有利 .在其它参数取值相同的情况下 ,还分别针对加入和不加入人工耗散两种情况进行模拟 ,结果表明人工耗散的加入使迭代余量的绝对值明显减小 ,也就是从一定程度上消减了数值解的振荡 .文中同时在数值试验的基础上提出了人工压缩系数的参考取值范围 .通过采用上述方法对后台阶绕流进行模拟 ,模拟结果和商用软件 PHOENICS3 .2在相同条件下模拟结果基本吻合 。 展开更多
关键词 人工可压缩方法 有限体积法 后台阶绕流
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Suitability of artificial viscosity discontinuous Galerkin method for compressible turbulence
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作者 YU Jian YAN Chao JIANG ZhenHua 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第7期1032-1049,共18页
A discontinuous Galerkin method based on an artificial viscosity model is investigated in the context of the simulation of compressible turbulence. The effects of artificial viscosity on shock capturing ability, broad... A discontinuous Galerkin method based on an artificial viscosity model is investigated in the context of the simulation of compressible turbulence. The effects of artificial viscosity on shock capturing ability, broadband accuracy and under-resolved instability are examined combined with various orders and mesh resolutions. For shock-dominated flows, the superior accuracy of high order methods in terms of discontinuity resolution are well retained compared with lower ones. For under-resolved simulations, the artificial viscosity model is able to enhance stability of the eighth order discontinuous Galerkin method despite of detrimental influence for accuracy. For multi-scale flows, the artificial viscosity model demonstrates biased numerical dissipation towards higher wavenumbers. Capability in terms of boundary layer flows and hybrid meshes is also demonstrated.It is concluded that the fourth order artificial viscosity discontinuous Galerkin method is comparable to typical high order finite difference methods in the literature in terms of accuracy for identical number of degrees of freedom, while the eighth order is significantly better unless the under-resolved instability issue is raised. Furthermore, the artificial viscosity discontinuous Galerkin method is shown to provide appropriate numerical dissipation as compensation for turbulent kinetic energy decaying on moderately coarse meshes, indicating good potentiality for implicit large eddy simulation. 展开更多
关键词 discontinuous Galerkin method artificial viscosity compressible turbulence implicit large eddy simulation
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