Implementation of parametric modeling to design Miura origami-inspired canopy toward adaptive urban habitat

Zhixiong Huang, Zhiwei Chen, Lu Zhu, Guangyi Xie, Yutian Hua, Dongdong Zhao, Nan Hu
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Abstract

The search for efficient and elegant geometric forms is always the center of structural design. With advances in parametric modeling, countless geometric forms can be generated for architects and engineers. This powerful digital tool is applicable to the design of many structural systems, in particular modular structures. This technical note develops and implements a general framework of the design, parametric modeling, and manufacturing for modular structures based on the modification of a classic Miura origami pattern. Guided by the geometric analysis, we compared three modified Miura origami units and tessellations. A representative origami-based canopy with varying angles in the Hcircumferential direction was designed through the proposed framework and numerically simulated to evaluate the kinematic and structural behavior. Finally, a meter-scale canopy prototype was constructed with digitally fabricated modular thick panels and assembled rapidly on the site. We envision that the proposed framework using parametric modeling can enable diverse designs and applications of origami-inspired deployable structures that can be later integrated into the development of adaptive and responsive structures in the future.

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实施参数建模,设计三浦折纸启发式天篷,打造适应性强的城市栖息地
追求高效、优雅的几何形状始终是结构设计的核心。随着参数化建模技术的进步,建筑师和工程师可以生成无数的几何形状。这种强大的数字工具适用于许多结构系统的设计,尤其是模块化结构。本技术说明基于对经典三浦折纸图案的修改,开发并实施了模块化结构设计、参数化建模和制造的总体框架。在几何分析的指导下,我们比较了三种经修改的三浦折纸单元和网格。通过提出的框架设计了一个在 Hcircumferential 方向上具有不同角度的代表性折纸天篷,并对其进行了数值模拟,以评估其运动学和结构行为。最后,我们用数字化制造的模块化厚板建造了一个一米级的顶篷原型,并在现场快速组装。我们认为,所提出的参数化建模框架可以实现折纸启发的可部署结构的多样化设计和应用,并在未来与自适应和响应式结构的开发相结合。
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