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The extended/generalized finite element method: An overview of the method and its applications

International Journal for Numerical Methods in Engineering · 2010 · Vol. 84(3) · pp. 253–304
Thomas‐Peter FriesTed Belytschko

Abstract

Abstract An overview of the extended/generalized finite element method (GEFM/XFEM) with emphasis on methodological issues is presented. This method enables the accurate approximation of solutions that involve jumps, kinks, singularities, and other locally non‐smooth features within elements. This is achieved by enriching the polynomial approximation space of the classical finite element method. The GEFM/XFEM has shown its potential in a variety of applications that involve non‐smooth solutions near interfaces: Among them are the simulation of cracks, shear bands, dislocations, solidification, and multi‐field problems. Copyright © 2010 John Wiley & Sons, Ltd.

Numerical methods in engineeringAdvanced Numerical Methods in Computational MathematicsComposite Material MechanicsExtended finite element methodFinite element methodGravitational singularitySpace (punctuation)Element (criminal law)Mixed finite element methodPolynomialApplied mathematicsMathematicsShear (geology)

Funding

  • Deutsche Forschungsgemeinschaft
  • Office of Naval Research
  • Army Research Office
Citations
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International Journal for Numerical Methods in Engineering · 2002 · 535 citations
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