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dc.contributor.authorEccher, Gabriele
dc.contributor.authorRasmussen, Kim J.R.
dc.contributor.authorZandonini, Riccardo
dc.date.accessioned2020-11-26
dc.date.available2020-11-26
dc.date.issued2007en
dc.identifier.urihttps://hdl.handle.net/2123/23979
dc.description.abstractIn previous reports [1, 2], the isoparametric spline finite strip method was successfully applied to the in-plane stress and bending linear elastic analyses of perforated plates. In this report the application of the isoparametric spline finite strip method is further extended to the linear elastic analysis of tri-dimensional perforated folded plate structures. The general theory of the isoparametric spline finite strip method is briefly introduced. Kinematics assumptions and the procedure to combine in-plane (membrane) and bending characteristics are set out. Particular attention is paid to the procedure for rotating the stiffness matrix and load vector from local to global coordinates. The reliability of the method is demonstrated by comparisons with finely meshed finite element analyses. Square stiffened plates in compression and bending containing openings of different shapes are analysed.en
dc.language.isoenen
dc.publisherSchool of Civil Engineering, The University of Sydneyen
dc.rightsCopyright All Rights Reserveden
dc.subjectCivil Engineeringen
dc.subjectFolded plateen
dc.subjectLinear elastic analysisen
dc.subjectIsoparametric spline finite strip methoden
dc.subjectPerforationsen
dc.subjectThin-walled elementsen
dc.titleLinear Elastic Isoparametric Spline Finite Strip Analysis of Perforated Thin-Walled Structures (No. R878)en
dc.typeReport, Researchen
dc.subject.asrc0905 Civil Engineeringen
dc.rights.otherThis publication may be redistributed freely in its entirety and in its original form without the consent of the copyright owner. Use of material contained in this publication in any other published works must be appropriately referenced, and, if necessary, permission sought from the author.en
usyd.facultyFaculty of Engineering, School of Civil Engineeringen
usyd.departmentCentre for Advanced Structural Engineeringen
workflow.metadata.onlyNoen


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