A critical review on molecular dynamics applied to structure fracture and failure analysis
Due to the continuous exploration of ocean resources, the marine structures are gradually applied from offshore to far-reaching sea areas, and the safety and reliability of the marine structures are becoming more and more important. Fractures and failures of the marine structures are the most common...
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Published in | Engineering analysis with boundary elements Vol. 150; pp. 413 - 422 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier Ltd
01.05.2023
Elsevier |
Subjects | |
Online Access | Get full text |
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Abstract | Due to the continuous exploration of ocean resources, the marine structures are gradually applied from offshore to far-reaching sea areas, and the safety and reliability of the marine structures are becoming more and more important. Fractures and failures of the marine structures are the most common structural damages while considerable numerical computational techniques are developed to investigate the failure mechanisms and health monitoring of the marine structures. This review aims to report the numerical methods for structural failure analysis from macroscopic, mesoscopic to microscopic scales, including the methods of the macroscopic continuum, lattice Boltzmann, and molecular dynamics. The fundamental theories and recent progresses in the macroscale, mesoscale and microscale are summarized to suggest the future development directions. The discussions of the latest achievements in structural failure analysis will not only deepen the understanding of the structural failure mechanisms subject to solid-fluid coupling in a marine environment, but also provide necessary guidance for engineers and researchers in this research field. |
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AbstractList | Due to the continuous exploration of ocean resources, the marine structures are gradually applied from offshore to far-reaching sea areas, and the safety and reliability of the marine structures are becoming more and more important. Fractures and failures of the marine structures are the most common structural damages while considerable numerical computational techniques are developed to investigate the failure mechanisms and health monitoring of the marine structures. This review aims to report the numerical methods for structural failure analysis from macroscopic, mesoscopic to microscopic scales, including the methods of the macroscopic continuum, lattice Boltzmann, and molecular dynamics. The fundamental theories and recent progresses in the macroscale, mesoscale and microscale are summarized to suggest the future development directions. The discussions of the latest achievements in structural failure analysis will not only deepen the understanding of the structural failure mechanisms subject to solid-fluid coupling in a marine environment, but also provide necessary guidance for engineers and researchers in this research field. |
Author | Królczyk, Grzegorz Andriukaitis, Darius Wang, Mengmeng Incecik, Atilla Li, Z. Yang, Chunsheng Gupta, Munish Kumar |
Author_xml | – sequence: 1 givenname: Mengmeng surname: Wang fullname: Wang, Mengmeng organization: Department of Marine Engineering, Ocean University of China, Qingdao 266100, China – sequence: 2 givenname: Atilla surname: Incecik fullname: Incecik, Atilla organization: Department of Naval Architecture, Ocean, and Marine Engineering, University of Strathclyde, Glasgow G11XQ, UK – sequence: 3 givenname: Chunsheng surname: Yang fullname: Yang, Chunsheng organization: National Research Council Canada, Aerospace Research Centre, Ottawa K1A 0R6, Canada – sequence: 4 givenname: Munish Kumar surname: Gupta fullname: Gupta, Munish Kumar organization: Department of Manufacturing Engineering and Automation Products, Opole University of Technology, Opole 45758, Poland – sequence: 5 givenname: Grzegorz surname: Królczyk fullname: Królczyk, Grzegorz organization: Department of Manufacturing Engineering and Automation Products, Opole University of Technology, Opole 45758, Poland – sequence: 6 givenname: Darius surname: Andriukaitis fullname: Andriukaitis, Darius organization: Department of Electronics Engineering, Kaunas University of Technology, Kaunas 51368, Lithuania – sequence: 7 givenname: Z. orcidid: 0000-0003-2159-4015 surname: Li fullname: Li, Z. email: z.li@po.edu.pl organization: Department of Manufacturing Engineering and Automation Products, Opole University of Technology, Opole 45758, Poland |
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Keywords | Molecular dynamics Structural fracture and failure Lattice Boltzmann method Failure analysis |
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