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Digital analysis of the geometric variability of Guadua, Moso and Oldhamii bamboo

机译:Guadua,Moso和Oldhamii竹子的几何变异性的数字分析

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The implementation of sustainable building materials is currently one of the principal global challenges faced by the construction industry. Natural bamboo culms are a potential alternative to tackle this challenge due to its favourable environmental credentials as well as affordability. However, the organic geometry of bamboo culms is one of the barriers that prevents them from being implemented in formal design procedures. This work presents the details of a new digitisation workflow to systematically capture the geometry of bamboo culms through the application of 3D scanning technologies and reverse engineering principles. This workflow is applied to carry out a comprehensive analysis of the geometric variability of Guadua angustifolia kunth (Guadua), Phillostachys pubescens (Moso) and Bambusa oldhamii (Oldhamii) to identify potential correlation patterns. This geometric analysis showed a wide variation in the geometric properties of all species and no particular pattern was found which could be adopted for a potential visual grading system. These results highlight the challenges that the use of bamboo culms pose for the traditional design and fabrication processes developed for manufactured structural elements. The proposed reverse engineering methodology adopted for this study can be used to quantify and manage the geometric variability of bamboo culms to support the development of new formal design and fabrication processes for this natural structural element. (C) 2019 Elsevier Ltd. All rights reserved.
机译:当前,可持续建筑材料的实施是建筑行业面临的主要全球挑战之一。天然竹秆由于其良好的环境信誉和可负担性,是应对这一挑战的潜在替代品。但是,竹杆的有机几何形状是阻止它们在正式设计程序中实施的障碍之一。这项工作提出了一个新的数字化工作流程的细节,该工作流程通过应用3D扫描技术和逆向工程原理来系统地捕获竹茎的几何形状。该工作流程用于对瓜瓜(Guadua angustifolia kunth)(瓜瓜(Guadua)),毛竹(Phillostachys pubescens)(Moso)和班布萨(Bambusa oldhamii)(Oldhamii)的几何变异性进行全面分析,以识别潜在的相关模式。这项几何分析表明,所有物种的几何特性差异很大,没有发现可用于潜在视觉分级系统的特定模式。这些结果凸显了竹杆的使用对为制造的结构元件开发的传统设计和制造过程带来的挑战。这项研究采用的拟议逆向工程方法可用于量化和管理竹杆的几何变异性,以支持针对这种天然结构元素的新正式设计和制造工艺的开发。 (C)2019 Elsevier Ltd.保留所有权利。

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