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A parametric Study of an Inverse Elastostatics Problem (IESP) using Simulated Annealing, Hooke & Jeeves and Sequential Quadratic Programming in conjunction with Finite Element and Boundary Element Methods

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dc.contributor.author Koukoulis, I en
dc.contributor.author Vossou, C en
dc.contributor.author Provatidis, C en
dc.date.accessioned 2014-03-01T01:55:44Z
dc.date.available 2014-03-01T01:55:44Z
dc.date.issued 2007 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/27829
dc.relation.uri http://www.akademik.unsri.ac.id/download/journal/files/waset/v26-25.pdf en
dc.subject Boundary Element en
dc.subject Boundary Element Method en
dc.subject Cost Function en
dc.subject Finite Element en
dc.subject Finite Element Method en
dc.subject Inverse Problem en
dc.subject Optimal Method en
dc.subject Parametric Study en
dc.subject Sequential Quadratic Programming en
dc.subject Simulated Annealing en
dc.title A parametric Study of an Inverse Elastostatics Problem (IESP) using Simulated Annealing, Hooke & Jeeves and Sequential Quadratic Programming in conjunction with Finite Element and Boundary Element Methods en
heal.type journalArticle en
heal.publicationDate 2007 en
heal.abstract The aim of the current work is to present a comparison among three popular optimization methods in the inverse elastostatics problem (IESP) of flaw detection within a solid. In more details, the performance of a simulated annealing, a Hooke & Jeeves and a sequential quadratic programming algorithm was studied in the test case of one circular flaw in a plate en


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