Εμφάνιση απλής εγγραφής

dc.creatorPapadimitriou, A.en
dc.creatorAndrianopoulos, K.en
dc.creatorBouckovalas, G.en
dc.date.accessioned2015-11-23T10:42:46Z
dc.date.available2015-11-23T10:42:46Z
dc.date.issued2008
dc.identifier10.1061/40975(318)120
dc.identifier.isbn9780784409756
dc.identifier.issn8950563
dc.identifier.urihttp://hdl.handle.net/11615/31657
dc.description.abstractA new numerical methodology is presented for the simulation of the non cohesive soil response under small, medium and large cyclic shear strains, with special interest given to liquefaction phenomena. The new methodology is based on a recently proposed elastoplastic bounding surface model, which has been implemented to the 2D finite difference code FLAC, via its User-Defined-Model capability. In particular, the emphasis in this paper is on comparing measurements to numerical results for the seismic response of a liquefiable sand layer that has a mild slope leading to the detrimental phenomenon of lateral spreading. The new methodology is proved capable of accurately predicting the time-histories of ground acceleration, excess pore pressure buildup and accumulation of displacements at all depths within the mildly-sloping liquefiable layer. Moreover, the new methodology provides insight to the mechanism of accumulation of displacement during lateral spreading. © 2008 ASCE.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-66449120901&partnerID=40&md5=09c6115ed755fcd011da62d1bdc6a941
dc.subjectBounding surface modelen
dc.subjectCyclic shear strainen
dc.subjectElasto-plasticen
dc.subjectExcess pore pressureen
dc.subjectFinite differenceen
dc.subjectGround accelerationsen
dc.subjectLateral spreadingen
dc.subjectNoncohesive soilen
dc.subjectNumerical methodologiesen
dc.subjectNumerical modelingen
dc.subjectNumerical resultsen
dc.subjectSand layeren
dc.subjectSoil structureen
dc.subjectCivil engineeringen
dc.subjectDynamicsen
dc.subjectEarthquakesen
dc.subjectEngineering geologyen
dc.subjectGeotechnical engineeringen
dc.subjectSoil structure interactionsen
dc.subjectSoilsen
dc.subjectTwo dimensionalen
dc.subjectSoil liquefactionen
dc.titleEfficient numerical modeling of liquefaction-induced deformations of soil structuresen
dc.typeconferenceItemen


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