Limit analysis of frictional block assemblies as a mathematical program with complementarity constraints

dc.contributor.authorTin-Loi, F.
dc.contributor.authorFerris, Michael
dc.date.accessioned2013-01-18T18:20:32Z
dc.date.available2013-01-18T18:20:32Z
dc.date.issued1999-02-15
dc.description.abstractThe computation of the collapse loads of discrete rigid block systems, characterized by frictional (nonassociative) and tensionless contact interfaces, is formulated and solved as a special constrained optimization problem know as a Mathematical Program with Equilibrium Constraints (MPEC). In the present instance, some of the essential constraints are defined by a complementarity system involving the orthogonality of two sign-constrained vectors. Due to its intrinsic complexity, MPECs are computationally very hard to solve. In this paper, we investigate a simple numerical scheme, involving appropriate relaxation of the complementarity term, to solve this nonstandard limit analysis problem. Some computational results are presented to illustrate potentialities of the method.en
dc.identifier.citation99-01en
dc.identifier.urihttp://digital.library.wisc.edu/1793/64402
dc.subjectmathematical programmingen
dc.subjectfrictionen
dc.subjectlimit analysisen
dc.titleLimit analysis of frictional block assemblies as a mathematical program with complementarity constraintsen
dc.typeTechnical Reporten

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Limit analysis of fictional block assemblies as a mathematical program with complementarity constraints

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