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首页> 外文期刊>International Journal of Environment and Pollution >Testing weighted splitting schemes on a one-column transport-chemistry model
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Testing weighted splitting schemes on a one-column transport-chemistry model

机译:在单柱运输化学模型上测试加权拆分方案

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摘要

In many transport-chemistry models, a huge system of onedimensional equations of the advection-diffusion-reaction type has to be integrated in time. Typically, this is done with the help of operator splitting. Operator splitting is attractive for complex large-scale transport-chemistry models because it can handle different processes separately in different parts of the computer program. Rosenbrock schemes combined with approximate matrix factorization (ROS-AMF) are an alternative to operator splitting which does not suffer from splitting errors. However, since the ROS2-AMF schemes are not based on operator splitting, implementation of these methods often requires major changes in the code. In this paper we test another second-order splitting introduced by Strang in 1963, which seemed to be forgotten and rediscovered recently (partially due to its intrinsic parallelism). This splitting, called symmetrically weighted sequential (SWS) splitting, is simple and straightforward to apply, independent of the order of the operators and has an operator-level parallelism. In the experiments, the SWS scheme compares favourably with Strang splitting, but is less accurate than ROS-AMF.
机译:在许多运输化学模型中,必须及时整合巨大的对流扩散反应类型的一维方程组。通常,这是在操作员拆分的帮助下完成的。操作员拆分对于复杂的大规模运输化学模型而言很有吸引力,因为它可以在计算机程序的不同部分分别处理不同的过程。 Rosenbrock方案与近似矩阵分解(ROS-AMF)相结合是运算符拆分的一种替代方法,它不会遭受拆分错误。但是,由于ROS2-AMF方案不是基于运算符拆分的,因此这些方法的实现通常需要对代码进行重大更改。在本文中,我们测试了由Strang于1963年引入的另一种二阶分裂,该分裂最近似乎已被忘记和重新发现(部分是由于其固有的并行性)。这种拆分称为对称加权顺序(SWS)拆分,应用简单,直接,与运算符的顺序无关,并且具有运算符级别的并行性。在实验中,SWS方案与Strang分裂相比具有优势,但准确性不及ROS-AMF。

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