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Adaptive crack propagation analysis with the element‐free Galerkin method
43
Citations
18
References
2002
Year
Numerical AnalysisFinite Element MethodAdaptivity AnalysisCrack PropagationEngineeringFracture OptimizationElement‐free Galerkin MethodMethod Of Fundamental SolutionMechanical EngineeringComputational MechanicsStructural MechanicsCrack Propagation AnalysisCrack FormationBoundary Element MethodDynamic Crack PropagationFracture MechanicsFracture Modeling
Abstract In this paper, an adaptive analysis of crack propagation based on the error estimation by the element‐free Galerkin (EFG) method is presented. The adaptivity analysis in quasi‐static crack propagation is achieved by adding and/or removing the nodes along the background integration cells, those are refined or recovered according to the estimated errors. These errors are obtained basically by calculating the difference between the values of the projected stresses and original EFG stresses. To evaluate the performance of the proposed adaptive procedure, the crack propagation behaviour is investigated for several examples. The results of these examples show the efficiency and accuracy of the proposed scheme in crack propagation analysis. Copyright © 2002 John Wiley & Sons, Ltd.
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