外文翻译-复合载荷下沙层地基运转塑性模型.doc
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1、翻译部分英文原文A plasticity model for the behaviour of footings on sand under combined loadingG.T.HOULSBY1, M.J.CASSIDY2(1.Departmen of Offshore Engineering, Oxford University, UK; 2.Center for Offshore Foundation Systems, University of Western Australia(formerly at Oxford University)ABSTRACT:A complete th
2、eoretical model is described for the behavior of rigid circular footings on sand, when subjected to combined vertical, horizontal and moment loading. The model, which is expressed in terms of work-hardening plasticity theory, is based on a series of tests specifically designed to allow evaluation of
3、 the various components of the theory. The model makes use of the force resultants and the corresponding displacements of the footing, and allows predictions of response to be made for any load or displacement combination. It is verified by comparison with the database of tests. The use of the model
4、 is then illustrated by some demonstration calculations for the response of a jack-up unit on sand. This example illustrates the principal purpose of the development, which is to allow a realistic modelling of foundation behaviour to be included as an integral part of a structural analysis.KEYWORDS:
5、 footings/foundations; model tests; numerical modelling and analysis; offshore engineering; plasticity; sandsINTRODUCTIONThe purpose of this paper is to describe a theoretical model, based on strain-hardening plasticity theory, which is capable of describing the behaviour of a circular footing on sa
6、nd when it is subjected to all possible combinations of drained vertical, horizontal and moment loading. The motivation for this work comes principally from the offshore industry, specifically arising from the problem of assessment of jack-up units under extreme loading. The applications are, howeve
7、r, much broader, since the model could be applied to many instances of combined loading of a footing on sand.Structural engineers carry out detailed analyses of jack-up units, and ask geotechnical engineers to provide them with the values of spring stiffnesses to model the foundations. Geotechnical
8、engineers tend to take the view that such a simplistic view of foundation behaviour is unrealistic. Unfortunately, however, they often describe the complexities and non-linearities of foundation behaviour by a series of ad hoc procedures, which a structural engineer cannot implement within a standar
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