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An accelerated technique for solving a coupled system of differential equations for a catalytic converter in interphase heat transfer

机译:一种加速技术,用于求解催化转化器催化转化器耦合系统的耦合系统

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This paper deals with an accelerated iterative procedure for a coupled system of partial differential equations arising from a catalytic converter model. Based on the main theorem, a finite difference based numerical method is developed. The monotone property as well as the convergence analysis and the error estimate of the proposed finite difference scheme are proved theoretically. The efficiency of the proposed scheme is illustrated by providing a comparative numerical study with the existing method. The proposed iterative procedure reduces the number of iterations at least by forty percent for certain benchmarks available in the literature. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文对催化转化器模型产生的部分微分方程的耦合系统进行了加速迭代程序。 基于主定理,开发了一种有限差分的数值方法。 理论上证实了单调性质以及所提出的有限差分方案的收敛分析及误差估计。 通过提供具有现有方法的比较数值研究来说明所提出的方案的效率。 所提出的迭代程序至少减少了文献中可用的某些基准的迭代次数。 (c)2016 Elsevier Inc.保留所有权利。

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