多孔空间——计算设计中的仿塔芙尼

Wei Ye, Shuhua Chen, Xiayu Zhao, Weiguo Xu
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摘要

多孔的城市空间不仅能改善互动,还能增加自然通风。风化岩石是自然界中存在多孔空间的地方。本文研究了塔福尼(tafoni)的生物仿生学,塔福尼是一种含有大小不一孔隙的风化岩石。塔夫尼的形成激发了建筑设计的灵感,但其复杂的形状使得手工建模具有挑战性。研究塔夫尼的生物仿生学的目的是将其优势应用到设计应用中。利用仿生技术,我们开发出了 tafoni 形态发生的计算算法。本文研究了 tafoni 的固有特性,并根据建筑几何元素对其进行了重新分类。然后描述了重新分类后的 tafoni,并解释了其形成过程。本文开发了一种三维进化算法和一种基于图表的 2.5D 描述算法。经过比较,选择了 2.5D 算法,因为它在计算设计方面更具可控性和可操作性。本文还对 2.5D 算法获得的结果进行了实验,以证明其适应性和建筑设计应用潜力,以及在城市规划、建筑设计和景观设计等不同设计学科中的应用方案。本文提出的算法可用于计算设计的各个领域。该算法计算效率高,同时保留了其生物形态。
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Porous space — biomimetic of tafoni in computational design

Porous urban spaces not only improve interactions, but also increase natural ventilation. Weathered rocks are where porous spaces exist in nature. This paper investigates the biomimicry of tafoni, a type of weathered rock that contains pores of varying sizes. The formation of tafoni inspires architectural design, but its complex shape makes manual modeling challenging. The objective of studying the biomimetics of tafoni is to apply its benefits to design applications. Using biomimetic techniques, computation algorithms for tafoni morphogenesis are developed. This paper investigates the inherent characteristics of tafoni and reclassifies them based on architectural geometric elements. It then describes the reclassified tafoni and explains the formation process. This paper develops a 3D evolutionary algorithm and a 2.5D descriptive algorithm based on diagrams. After a comparison, the 2.5D algorithm is chosen because it is more controllable and operable for computational design. This paper also conducts experiments on the results obtained by the 2.5D algorithm to demonstrate its adaptability and architectural design application potential, as well as its application schemes in various design disciplines, including urban planning, architectural design, and landscape design. This paper proposes an algorithm that can be utilized in various fields of computational design. It is computationally efficient while retaining its biological form.

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