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Self-adaptive triangular mesh generation framework for free-form single-layer reticulated shells based on virtual interaction forces
DOI:10.1016/j.autcon.2023.104750.png)
摘要
En 中文
With the pursuit of architectural aesthetics and the development of computer-aided design, free-form single-layer reticulated shells (SLRSs) are becoming increasingly popular. Generating a uniform and fluent mesh on an arbitrary free-form surface is a challenging task. This paper presents an automatic, triangular mesh-generation framework for free-form SLRSs. An algorithm based on non-linear virtual interaction forces (VIFs) is adopted to automatically update joint coordinates. An innovative mesh-energy function is defined to adaptively adjust the number and distribution of joints according to the desired size. A simple yet effective connectivity optimization algorithm and a VIF-based mesh-smoothing method are also proposed to convert the unstructured mesh into a structured type. Distance-based priority-order and direction-determination criteria for the operations are defined to automate topology optimization. Case studies demonstrate that this framework is robust to different types of free-form SLRSs, initial joint densities, desired sizes, and edge-swapping criteria.
Keyword:
Free -form single -layer reticulated shells
Triangular mesh
Virtual interaction force
Energy function
Connectivity optimization
Mesh smoothing
期刊
IF:
11.5
论文数:
6.3K
被引数:
4.2W

