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An enriched phase-field method for the efficient simulation of fracture processes
被引:0
作者:
Stefan Loehnert
Christian Krüger
Verena Klempt
Lukas Munk
机构:
[1] Institute of Mechanics and Shell Structures,Technische Universität Dresden
来源:
Computational Mechanics
|
2023年
/
71卷
关键词:
Phase-field;
XFEM;
Brittle fracture;
Enrichment;
Crack propagation;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The efficient simulation of complex fracture processes is still a challenging task. In this contribution, an enriched phase-field method for the simulation of 2D fracture processes is presented. It has the potential to drastically reduce computational cost compared to the classical phase-field method (PFM). The method is based on the combination of a phase-field approach with an ansatz transformation for the simulation of fracture processes and an enrichment technique for the displacement field as it is used in the extended finite element method (XFEM) or generalised finite element method (GFEM). This combination allows for the application of significantly coarser meshes than it is possible in PFM while still obtaining accurate solutions. In contrast to classical XFEM / GFEM, the presented method does not require level set techniques or explicit representations of crack geometries, considerably simplifying the simulation of crack initiation, propagation, and coalescence. The efficiency and accuracy of this new method is shown in 2D simulations.
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页码:1015 / 1039
页数:24
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