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Design and Digital Fabrication of a Parametric Joint for Bamboo Sustainable Structures

机译:竹可持续结构参数接头的设计与数字制造

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The study deepens the design of a joining system for bamboo spatial structure by proposing new and advanced solutions that guarantee maximum freedom of composition to the designer. The joint allows to determine and control parametrically the adaptability to any spatial grid configuration of culms with heterogeneous dimensions. Despite the bamboo being one of the main natural building materials in the field of sustainable architecture, currently, it is not used enough due to the lack of adequate connection systems. Bamboo is a rapidly growing renewable resource, naturally available, which is quite strong and lends itself to structural applications. The paper proposes an innovative approach to architectural design by parametric modelling techniques developed in recent years in parallel with advances in the field of computational geometry. The 3D prototyping of different types of joints and the architectural-compositional design of a temporary structure, destined to be used as an exhibition pavilion, have made it possible to validate the technological solution defined.
机译:该研究通过提出新的和先进的解决方案,深化竹空间结构的连接系统的设计,以保证最大的构图自由于设计师。该接头允许参数地确定和控制对具有异质尺寸的秆的任何空间网格配置的适应性。尽管竹子是可持续建筑领域的主要天然建筑材料之一,目前,由于缺乏足够的连接系统,它不足。竹子是一种迅速增长的可再生资源,自然可用,这是非常强大的,并且适用于结构应用。本文提出了近年来参数建模技术的建筑设计方法,与计算几何领域的进步平行。不同类型的关节和临时结构的建筑组成设计的3D原型设计,注定用作展览馆,使得可以验证定义的技术解决方案。

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