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Adaptive coupling of the finite-element and scaled boundary finite-element methods for non-linear analysis of unbounded media
Journal article   Peer reviewed

Adaptive coupling of the finite-element and scaled boundary finite-element methods for non-linear analysis of unbounded media

J.P. Doherty and A.J. Deeks
Computers and geotechnics, Vol.32(6), pp.436-444
2005

Abstract

A technique is developed for analysing elasto-plastic unbounded media by adaptively coupling the finite-element method with the scaled boundary finite-element method. The analysis begins with a finite-element mesh that tightly encloses the load–medium interface, capturing non-linearity in the very near field. The remainder of the problem is modelled accurately and efficiently using the semi-analytical scaled boundary finite-element method. Load increments are applied in the usual (finite-element) way and the plastic stress field grows outwards from the load–medium interface as the solution advances. If plasticity is detected at a Gauss point in the outer band of finite-elements, an additional band of finite-elements are added around the perimeter of the existing mesh and the scaled boundary finite-element domain is stepped out accordingly. This technique exploits the most attractive features of both the finite-element and scaled boundary finite-element methods. The technique is shown to be highly accurate and both user and computationally efficient.

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Citation topics
7 Engineering & Materials Science
7.63 Mechanics
7.63.1291 Fracture Mechanics
Web Of Science research areas
Computer Science, Interdisciplinary Applications
Engineering, Geological
Geosciences, Multidisciplinary
ESI research areas
Computer Science
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