Overlapping Additive Schwarz preconditioners for isogeometric collocation discretizations of linear elasticity

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초록

Overlapping Additive Schwarz (OAS) preconditioners are here constructed for isogeometric collocation discretizations of the system of linear elasticity in both two and three space dimensions. Isogeometric collocation methods are recent variants of isogeometric analysis based on the numerical approximation of the strong form of partial differential equations at appropriate collocation points. Numerical results in two and three dimensions show that two-level OAS preconditioners are scalable in the number of subdomains N, quasi-optimal with respect to the mesh size h and optimal with respect to the spline polynomial degree p. Moreover, two-level OAS preconditioners are more robust than one-level OAS and non-preconditioned GMRES solvers when the material tends to the incompressible limit, as well as in the presence of strong deformation of the NURBS geometry.

키워드

Domain decomposition methodsOverlapping SchwarzScalable preconditionersIsogeometric analysisCollocation methodsLinear elasticityBDDC PRECONDITIONERSMULTIGRID METHODSFINITE-ELEMENTSEFFICIENTNURBSALGORITHMSQUADRATUREGEOPDESLOCKINGCOST
제목
Overlapping Additive Schwarz preconditioners for isogeometric collocation discretizations of linear elasticity
저자
Cho, D.Pavarino, L. F.Scacchi, S.
DOI
10.1016/j.camwa.2021.04.007
발행일
2021-07-01
유형
Article
저널명
Computers and Mathematics with Applications
93
페이지
66 ~ 77