Topology Optimization of Plane Structures using Modal Strain Energy for Fundamental Frequency MaximizationTopology Optimization of Plane Structures using Modal Strain Energy for Fundamental Frequency Maximization
- Other Titles
- Topology Optimization of Plane Structures using Modal Strain Energy for Fundamental Frequency Maximization
- Authors
- 이상진; 배정은
- Issue Date
- 2010
- Publisher
- 대한건축학회
- Keywords
- Topology Optimization; Modal Strain Energy; Natural Frequency; Multi-frequency Problem; Optimality Criteria
- Citation
- Architectural Research, v.12, no.1, pp 39 - 47
- Pages
- 9
- Indexed
- KCI
- Journal Title
- Architectural Research
- Volume
- 12
- Number
- 1
- Start Page
- 39
- End Page
- 47
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/25732
- ISSN
- 1229-6163
2383-5575
- Abstract
- This paper describes a topology optimization technique which can maximize the fundamental frequency of the structures. The fundamental frequency maximization is achieved by means of the minimization of modal strain energy as an inverse problem so that the strain energy based resizing algorithm is directly used in this study. The strain energy to be minimized is therefore employed as the objective function and the initial volume of structures is used as the constraint function. Multi-frequency problem is considered by the introduction of the weight which is used to combine several target modal strain energy terms into one scalar objective function. Several numerical examples are presented to investigate the performance of the proposed topology optimization technique. From numerical tests, it is found to be that the proposed optimization technique is extremely effective to maximize the fundamental frequency of structure and can successfully consider the multi-frequency problems in the topology optimization process.
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Collections - 공과대학 > School of Architectural Engineering > Journal Articles

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