On a Large Time-Stepping Method for the Swift-Hohenberg Equation

Authors

  • Zhengru Zhang
  • Yuanzi Ma

DOI:

https://doi.org/10.4208/aamm.2014.m48

Keywords:

Large time-stepping method, energy stable, Swift-Hohenberg equation, finite difference method.

Abstract

The main purpose of this work is to contrast and analyze a large time-stepping numerical method for the Swift-Hohenberg (SH) equation. This model requires very large time simulation to reach steady state, so developing a large time step algorithm becomes necessary to improve the computational efficiency. In this paper, a semi-implicit Euler scheme in time is adopted. An extra artificial term is added to the discretized system in order to preserve the energy stability unconditionally. The stability property is proved rigorously based on an energy approach. Numerical experiments are used to demonstrate the effectiveness of the large time-stepping approaches by comparing with the classical scheme.

Published

2021-07-01

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