Linear and energy stable schemes for the Swift–Hohenberg equation with quadratic-cubic nonlinearity based on a modified scalar auxiliary variable approach

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초록

In this study, we develop linear and energy stable numerical schemes for the Swift–Hohenberg equation with quadratic-cubic nonlinearity. A modified scalar auxiliary variable (SAV) approach is used to construct the temporally first- and second-order accurate discretizations. Different from the classical SAV approach, the proposed schemes permit us to solve the governing equations in a step-by-step manner, i.e., the calculation of inner product is not needed. We analytically prove the energy stability. We solve the resulting system of discrete equations using the linear multigrid method. We perform various numerical examples to show the accuracy and energy stability of the proposed method. The pattern formations in two- and three-dimensional spaces are also simulated. © 2021, The Author(s), under exclusive licence to Springer Nature B.V.

키워드

Energy stabilityPattern formationSAV approachSwift–Hohenberg equationFINITE-DIFFERENCE SCHEMELOCAL COLLOCATION METHODCAHN-HILLIARDNUMERICAL SCHEMECONVERGENCE ANALYSISCRYSTAL2ND-ORDERIMPLEMENTATION
제목
Linear and energy stable schemes for the Swift–Hohenberg equation with quadratic-cubic nonlinearity based on a modified scalar auxiliary variable approach
저자
Yang, J.Kim, J.
DOI
10.1007/s10665-021-10122-6
발행일
2021-06
유형
Article
저널명
Journal of Engineering Mathematics
128
1