首页> 外文期刊>Journal of Computational Physics >AN IMPLICIT MULTIGRID ALGORITHM FOR COMPUTING HYPERSONIC, CHEMICALLY REACTING VISCOUS FLOWS
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AN IMPLICIT MULTIGRID ALGORITHM FOR COMPUTING HYPERSONIC, CHEMICALLY REACTING VISCOUS FLOWS

机译:计算超音速,化学反应粘性流的隐式多重网格算法

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An implicit algorithm for computing viscous flows in chemical nonequilibrium is presented. Emphasis is placed on the numerical efficiency of the time integration scheme, both in terms of periteration workload and overall convergence rate. In this context, several techniques are introduced, including a stable, O(m(2)) approximate factorization of the chemical source Jacobian and implementations of V-cycle and filtered multigrid acceleration methods. A five species-seventeen reaction air model is used to calculate hypersonic viscous flow over a cylinder at conditions corresponding to flight at 5 km/s, 60 km altitude and al 11.36 km/s, 76.42 km altitude. Inviscid calculations using an eleven-species reaction mechanism including ionization are presented for a case involving 11.37 km/s flow at an altitude of 84.6 km. Comparisons among various options for the implicit treatment of the chemical source terms and among different multilevel approaches for convergence acceleration are presented for all simulations. (C) 1996 Academic Press, Inc. [References: 37]
机译:提出了一种计算化学非平衡粘性流的隐式算法。重点放在时间积分方案的数值效率上,这涉及到渗透工作量和总体收敛速度。在这种情况下,介绍了几种技术,包括化学源雅可比行列式的稳定O(m(2))近似分解以及V循环和滤波多网格加速方法的实现。在对应于以5 km / s,60 km高度的飞行和以11.36 km / s,76.42 km高度飞行的条件下,使用五种物质-17反应空气模型来计算圆柱体上的高超声速粘性流。提出了使用11种反应机制(包括电离)的无粘性计算,该案例涉及在84.6 km的高度下流量为11.37 km / s的情况。对于所有模拟,都对化学源项的隐式处理的各种选项之间以及收敛加速的不同多级方法之间的比较进行了比较。 (C)1996 Academic Press,Inc. [参考:37]

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