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A practical multiscale analysis for nonlinear RC structures using a smart substructure replacement strategy

delete2024-12-01
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PRE
AI
古泉 封面图
古泉 (Quan Gu)
R
Ruijie Chang
张
张宁 (Ning Zhang) *
B
Baoyin Sun
J
Jinping Ou
DOI:10.1016/j.soildyn.2024.108997delete
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摘要

摘要

En 中文
This paper presents a novel practical multiscale analysis (MSA) method for simulating local damages in large reinforced concrete (RC) structures during seismic events. Traditional techniques like the finite element (FE) method often struggle to balance computational costs with detailed simulation. The proposed method facilitates sequential local refinement from macroscopic to mesoscopic scales of RC structures, focusing strategically on critical areas prone to damage and cracking. Key features include: (1) 'Correction forces' enable integration and collaboration among models of different refinement levels, keeping models unchanged (i.e., without additions, deletions, or further refinement of elements), streamlining analysis and independent implementation across methods, scales, and platforms. (2) A smart replacement strategy ensures smooth transitions and prevents abrupt force changes between models at different refinement levels. (3) A 'training process' before performing the replacement and a semi-explicit method guarantee the accuracy and efficiency of the MSA method. (4) Parallel and distributed computing is seamlessly applied, significantly accelerating the analysis at each level. Implemented in the open-source software OpenSees, this method is illustrated through three examples that efficiently capture both the macroscopic mechanical responses and detailed local damage behaviors. This approach provides a valuable tool for the refined analysis of large-scale RC structures.
Keyword:
Nonlinear analysis
Multiscale analysis
Large-scale structure
OpenSees

期刊

Soil Dynamics and Earthquake Engineering 封面图
Soil Dynamics and Earthquake Engineering
IF:
4.6
论文数:
7.6K
被引数:
2.5W

机构

H
Hohai University
学者数:
2.3W
论文数: 1.8W
被引数: 2.1W
H
harbin institute of technology
学者数:
8.0W
论文数: 6.6W
被引数: 66
H
hefei university of technology
学者数:
2.5W
论文数: 1.7W
被引数: 35
X
xiamen university
学者数:
5.9W
论文数: 3.8W
被引数: 67
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