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ITERATIVE SPACE-MARCHING METHOD FOR COMPRESSIBLE SUB-,TRANS-,AND SUPERSONIC FLOWS

机译:可压缩子流,换流和超音速流动的迭代空间规划方法

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摘要

A new iterative fully coupled implicit space-marching method is proposed for solving the two-dimensional steady Euler equations for compressible flows at Mach numbers ranging from subsonic to supersonic. A special treatment of the streamwise pressure gradient component permits us to calculate both supersonic flow regions, where the Euler equations are hyperbolic, and subsonic regions, where the equations reveal elliptic properties. To take into account the elliptic effects of subsonic and transonic flows, space-marching sweeps are carried out iteratively . Anew parabolic pressure correction procedure is developed to accelerate the convergence rate. This procedure can be applied for subsonic and transonic regimes and is consistent with the characteristic analysis of the Euler equations. At each marching station, a Newton iterative technique is used to solve the nonlinear system of equations in a fully coupled manner.
机译:提出了一种新的迭代全耦合隐式空间行进迭代方法,用于求解亚音速到超音速马赫数可压缩流的二维稳态Euler方程。对流向压力梯度分量的特殊处理使我们既可以计算Euler方程为双曲线的超音速流动区域,也可以计算出具有椭圆形性质的亚音速区域。考虑到亚音速流和跨音速流的椭圆效应,迭代进行空间行进扫描。开发了新的抛物线压力校正程序以加快收敛速度​​。此程序可用于亚音速和跨音速状态,并且与Euler方程的特征分析一致。在每个行进站,都使用牛顿迭代技术以完全耦合的方式求解非线性方程组。

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