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  4. Application of the Non-Negative Moment Fitting Approach in the Finite Cell Analysis of Brittle Phase-Field Fracture
 
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Application of the Non-Negative Moment Fitting Approach in the Finite Cell Analysis of Brittle Phase-Field Fracture

Publikationstyp
Journal Article
Date Issued
2025-04-21
Sprache
English
Author(s)
Hosseini, Seyed Farhad  
Konstruktion und Festigkeit von Schiffen M-10  
Gorji, Mahan  
Konstruktion und Festigkeit von Schiffen M-10  
Sartorti, Roman  orcid-logo
Konstruktion und Festigkeit von Schiffen M-10  
Radtke, Lars  
Konstruktion und Festigkeit von Schiffen M-10  
Düster, Alexander  
Konstruktion und Festigkeit von Schiffen M-10  
TORE-URI
https://hdl.handle.net/11420/55601
Journal
International journal of computational methods  
Citation
International journal of computational methods (in Press): (2025)
Publisher DOI
10.1142/S0219876225500227
Publisher
World Scientific
This paper addresses the prediction of fracture processes in complex geometries. In this approach, phase-field modeling is integrated into the finite cell method to have an efficient and robust simulation tool for brittle fracture. The non-negative moment fitting approach is employed as an integration scheme to reduce the number of integration points, which leads to shorter simulation times as well as lower memory requirements for history variables. Two 3D benchmark examples are provided to demonstrate the performance of the implemented approach compared to the standard quadrature based on the space-tree approach. Finally, the proposed method is applied to predict the sequence of strut fractures in brittle foams.
Subjects
Phase-field fracture
Finite cell method (FCM)
Non-negative moment fitting (NNMF)
DDC Class
620: Engineering
Funding(s)
Numerische Modellierung teilzementierter Böden im Stagnationsbereich  
Neuvernetzung im Rahmen der Finiten Cell Methode für Probleme mit großen Deformationen  
Funding Organisations
Deutsche Forschungsgemeinschaft (DFG)  
TUHH
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