A parallel spectral element method for applications to computational mechanics

dc.contributor.authorMaggio, Fabio
dc.contributor.authorMassidda, Luca
dc.contributor.authorSabadell, Javier
dc.contributor.authorSiddi, Giuliana
dc.date.accessioned2014-05-28T11:12:39Z
dc.date.available2014-05-28T11:12:39Z
dc.date.issued2001
dc.description.abstractWe present a fully unstructured, parallel spectral element method based on domain decomposition. The implementation aims at improving accuracy and performance of a large number of applications in computational mechanics. We accomplish this target by merging the high accuracy of spectral methods with the flexibility of finite elements in treating problems with complex geometry. Parallelism is coarse grain and exploited at the algebraic level: the global linear system is distributed among processors, and then solved by iterative techniques. For evolutive problems it is possible to adopt explicit time-marching schemes, thus resulting in very competitive performances. We provide a couple of numerical experiments, based on the Helmholtz equation and the acoustic problem, and give a measure of accuracy and efficiency, illustrating the method in both steady and evolutive problems.IT
dc.identifier.urihttp://hdl.handle.net/11050/965
dc.language.isoenIT
dc.subjectseismic wave propagationIT
dc.subjectacoustic wavefieldIT
dc.subjectdomain decomposition methodsIT
dc.subject.een-cordisEEN CORDIS::FISICA E SCIENZE ESATTE::Matematica, statistica::Modellazione matematicaIT
dc.subject.een-cordisEEN CORDIS::FISICA E SCIENZE ESATTE::Scienze della terra ::Tettonica, sismologiaIT
dc.titleA parallel spectral element method for applications to computational mechanicsIT
dc.typeReportIT
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