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首页> 外文期刊>International Journal of Space Structures >A study of digital and physical workflows used for the creation of fabric-formed ice shells with bending active frames
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A study of digital and physical workflows used for the creation of fabric-formed ice shells with bending active frames

机译:用于创建织物形成的冰壳的数字和物理工作流程,弯曲有源框架

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Cold climate regions with sustained temperatures between −10°C and −20°C offer a unique opportunity to produce temporary rigid ice spatial structures. An advantage offered by creating these unusual structures includes their ability to test the structural performance of spatial shells made from this and other analogous liquid-to-solid materials (e.g. concrete, GFRC, fiberglass, etc.) at a building scale. Additionally, because of the minimal cost of the material and temporary life of these structures, they offer a unique opportunity to explore and improve the design and construction methods used to erect shell structures in an efficient and low impact way. This paper focuses on the creation of fabric-formed ice shells utilizing bending active frames as a form-finding system. In particular, the paper will analyze the design process workflows used in three case studies of building-scale ice shell projects created by the authors and highlight the tools and methodologies developed to address the particular goals of each project. Responding to the lessons learned from these projects, a final project describing current research will be presented. In this work there is an effort to synthesize the lessons from the three previous projects and produce a congruent, iterative, and effective design and construction workflow to produce fabric-formed ice shells using bending active gridshells. An emphasis in this study focuses on the informational and methodological transfer between digital and physical tools and how these unique tools and capacities can create a synergistic design and construction language that leverages the limitations of one with the strengths of the other.
机译:冷气候区具有-10°C和-20°C之间的持续温度,提供了生产临时刚性冰空间结构的独特机会。通过创造这些不寻常的结构提供的优点包括它们在建筑尺度上测试由该基于其它类似的液体 - 固体材料(例如混凝土,GFRC,玻璃纤维等)制成的空间壳的结构性能。此外,由于这些结构的材料的最小成本和临时寿命,它们提供了独特的机会,可以探索和改进用于以有效和低碰撞方式竖立壳结构的设计和施工方法。本文侧重于利用弯曲有源框架作为形成系统的织物形成的冰壳。特别是,本文将分析由作者创建的建筑规模冰壳项目的三个案例研究中使用的设计过程工作流程,并突出显示为解决每个项目的特定目标而开发的工具和方法。回复从这些项目中学到的经验教训,将提出一个描述当前研究的最终项目。在这项工作中,努力综合三个以前的项目的教训,并产生一致的,迭代,有效的设计和施工工作流程,以生产使用弯曲的活性栅格生产织物形成的冰壳。本研究强调侧重于数字和物理工具之间的信息和方法论,以及这些独特的工具和能力如何创造一种协同设计和建筑语言,该设计和施工语言利用了一个与另一个强度的局限性。

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