首页> 外文会议>12th annual conference of the CFD Society of Canada (CFD 2004) >A Zonal Finite Element Method and Some Related Issues for Calculating Compressible and Incompressible Viscous Flows
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A Zonal Finite Element Method and Some Related Issues for Calculating Compressible and Incompressible Viscous Flows

机译:计算可压缩和不可压缩粘性流的区域有限元方法及相关问题

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A viscous-inviscid zonal method is presented for simulating compressible and incompressible viscous flows.In the method,the computational domain is divided into an inviscid zone,where an inviscid solver is used,and a viscous zone near the body surface and its wake,where a Navier-Stokes solver is employed to deal with the viscous flow.The computational efficiency is thus improved by reducing the extent of the viscous computational domain.The coupling is made along a patching boundary,located in the inviscid part of the flow. rnA finite element method is used to deal with both the inviscid and viscous problems.The inviscid solution is computed by solving the potential flow with a density upwind(also called artificial compressibility) finite element method.The viscous solution is obtained by solving Reynolds-averaged Navier- Stokes(RANS)equations via a streamline upwind Petrov-Galerkin finite element method. rnNumerical results are presented for two-dimensional compressible and incompressible high Reynolds number turbulent flows around an NACA 0012 airfoil.The results by the present viscous-inviscid methods are in close agreement with the full Navier- Stokes solutions by the present author and others.
机译:为了模拟可压缩和不可压缩的粘性流,提出了一种粘性-非粘性带状区域方法。该方法将计算域划分为一个粘性区域,在该区域使用一个粘性解算器,一个在体表及其尾部附近的粘性区域。使用Navier-Stokes求解器来处理粘性流。因此,通过减少粘性计算域的范围来提高计算效率。耦合是沿着位于流体不粘部分中的修补边界进行的。 rn有限元方法用于处理粘性和粘性问题。粘性流体是通过用密度逆风(也称为人工可压缩性)有限元方法求解势流来计算粘性溶液,而粘性流体则是通过求解雷诺平均来获得的Navier-Stokes(RANS)方程通过简化的上风Petrov-Galerkin有限元方法计算。 rn给出了围绕NACA 0012翼型的二维可压缩和不可压缩高雷诺数湍流的数值结果。目前的粘性-无粘性方法的结果与本作者和其他人的完整Navier-Stokes解决方案非常一致。

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