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An embedded variable step IMEX scheme for the incompressible Navier-Stokes equations

机译:不可压缩Navier-Stokes方程的嵌入式可变步长IMEX方案

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This report presents a series of implicit-explicit (IMEX) variable stepsize algorithms for the incompressible Navier-Stokes equations (NSE). Here, IMEX means the nonlinear term is treated fully explicitly while the remaining terms are treated implicitly. With the advent of new computer architectures there has been growing demand for low memory solvers of this type. The addition of time adaptivity improves the accuracy and greatly enhances the efficiency of the algorithm. We prove energy stability of an embedded first-second order IMEX pair. For the first order member of the pair, we prove stability for variable stepsizes, and analyze convergence. We believe this to be the first proof of this type for a variable stepsize IMEX scheme for the incompressible NSE. We then define and test a variable stepsize, variable order IMEX scheme using these methods. Our work contributes several firsts for IMEX NSE schemes, including an energy argument and error analysis of a two-step, variable stepsize method, and embedded error estimation for an IMEX multi-step method. (C) 2020 Elsevier B.V. All rights reserved.
机译:此报告介绍了一系列隐式显式(IMEx)变量的步骤算法,用于不可压缩的Navier-Stokes方程(NSE)。在这里,IMEX是指非线性术语被完全明确处理,而剩余的术语被隐含地处理。随着新计算机架构的出现,对这种类型的低内存求解器来说,越来越多的需求。增加时间适应性提高了准确性,大大提高了算法的效率。我们证明了嵌入式第一二阶IMEX对的能量稳定性。对于该对的第一阶成员,我们证明了可变的稳定性,分析了收敛性。我们认为这是一个可变的第一个验证这种类型的可扩张NSE的IMEX方案。然后,我们使用这些方法定义和测试变量步骤STAPTEIZE,可变阶IMEX方案。我们的工作为IMEX NSE方案提供了几个第一个第一个项目,包括一个两步,变量步骤化方法的能量参数和错误分析,以及IMEX多步骤方法的嵌入式错误估计。 (c)2020 Elsevier B.v.保留所有权利。

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