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An Automated Adaptive Finite Element Mesh Generation for DynamicsAn Automated Adaptive Finite Element Mesh Generation for Dynamics

Other Titles
An Automated Adaptive Finite Element Mesh Generation for Dynamics
Authors
윤종열
Issue Date
2019
Publisher
한국지진공학회
Keywords
Automated finite element analyses; Adaptive mesh generations; Gauss point error estimates; Finite element dynamics
Citation
한국지진공학회논문집, v.23, no.1, pp.83 - 88
Journal Title
한국지진공학회논문집
Volume
23
Number
1
Start Page
83
End Page
88
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/2740
ISSN
1226-525X
Abstract
Structural analysis remains as an essential part of any integrated civil engineering system in today’s rapidly changing computing environment. Even with enormous advancements in capabilities of computers and mobile tools, enhancing computational efficiency of algorithms is necessary to meet the changing demands for quick real time response systems. The finite element method is still the most widely used method of computational structural analysis; a robust, reliable and automated finite element structural analysis module is essential in a modern integrated structural engineering system. To be a part of an automated finite element structural analysis, an efficient adaptive mesh generation scheme based on R-H refinement for the mesh and error estimates from representative strain values at Gauss points is described. A coefficient that depends on the shape of element is used to correct overly distorted elements. Two simple case studies show the validity and computational efficiency. The scheme is appropriate for nonlinear and dynamic problems in earthquake engineering which generally require a huge number of iterative computations.
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College of Engineering > Department of Civil Engineering > 1. Journal Articles

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