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Structural design for modular integrated construction with parameterized level set-based topology optimization method

delete2021-06-01
delete8
PRE
AI
魏鹏 (Peng Wei)
Y
Yang Liu
J
Jian‐Guo Dai
Z
Zuyu Li
Y
Yufeng Xu *
DOI:10.1016/j.istruc.2020.12.090delete
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Abstract

Abstract

En 中文
Modular integrated construction (MIC) can realize modular production in factories and has the advantages of increasing material utilization, speeding up construction, and improving construction environment, which make it more and more widely accepted in engineering practice. But a critical issue for MIC is how to design standard structural modular to maximize its construction productivity. In this paper, a structural topology optimization method based on a parameterized level set is adopted to realize the modular design for stiffness maximum problem of structures. By introducing the symmetry and pattern repetition (SPR) constraints in the optimization model and combining the finite element-based numerical analysis method, the modular design of a structure can be obtained through topology optimization. As a result, the structure can be assembled with repeated modular of the same topology to realize the MIC. Several two-dimensional (2D) and three-dimensional (3D) numerical examples are studied to illustrate the effectiveness of the proposed method in building designs following the MIC concept.
Keywords:
Topology optimization
Modular integrated construction
Parameterized level-set method
Symmetry and pattern repetition

Journal

Structures cover
Structures
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4.3
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1.2W
Citations:
2.7W

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hong kong polytechnic university
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tsinghua university
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university of technology sydney
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south china university of technology
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