>A second‐order decoupled algorithm for the nonstationary Stokes‐Darcy system, which allow'/> A second‐order partitioned method with different subdomain time steps for the evolutionary Stokes‐Darcy system
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A second‐order partitioned method with different subdomain time steps for the evolutionary Stokes‐Darcy system

机译:具有不同子域时间步骤的二阶分区方法,用于进化斯托西系统

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>A second‐order decoupled algorithm for the nonstationary Stokes‐Darcy system, which allows different time steps in two subregions, is proposed and analyzed in this paper. The algorithm, which is a combination of the second‐order backward differentiation formula and second‐order extrapolation method, uncouples the problem into two decoupled problems per time step. We prove the unconditional stability and long‐time stability of the decoupled scheme with different time steps and derive error estimates of this decoupled algorithm using finite element spatial discretization. Numerical experiments are provided to illustrate the accuracy, effectiveness, and stability of the decoupled algorithm and show its advantages of increasing accuracy and efficiency.
机译: >二阶 本文提出并分析了非间断斯托西系统的解耦算法,允许两个子区域中的不同时间步骤。 该算法是二阶向后分化公式和二阶外推方法的组合,将问题解除为每个时间步长的两个解耦问题。 我们通过有限元空间离散化来证明具有不同时间步骤的解耦方案的无条件稳定性和长时间稳定性,并通过有限元空间离散化导出该解耦算法的误差估计。 提供了数值实验,以说明解耦算法的准确性,有效性和稳定性,并表明了提高准确性和效率的优点。

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