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RIBA President's Awards for Research 2016: Winner, Design and Technical Category: Super Tall Timber: design research for the next generation of natural structure

机译:2016年RIBA总统研究奖:设计和技术类别获奖者:超高木材:下一代自然结构的设计研究

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摘要

This research project aspires to make truly tall timber buildings a reality. Through a combination of theoretical design and physical testing this research demonstrates the viability of timber buildings at much greater heights than has previously been possible. By pushing the limits of theoretical designs into the realms of the supertall, sometimes beyond that which is feasible using current materials and construction technologies, this research also sets out the requirements for the next generation of engineered plant-based materials. The research is a collaboration between academics, practising architects and practising structural engineers. The approach is research through design, and design through research. Timber towers are designed well beyond existing heights, and analysed to understand how they stand up and which areas are most critical for further research. By bringing highly regarded architectural and structural designers together with the research capabilities of a leading university, this project creates a precedent-setting model for interdisciplinary engagement within and between the design and research communities. By coupling exemplary design in timber with a university's research capacity, the project represents a real opportunity for transformational change in the design of tall timber buildings. Essential details and connections are determined and 'unknowns' with respect to material and structural performance are identified. A programme of testing to investigate these unknowns and validate the design approaches is carried out at the university. Outcomes of the test programme and new insights are fed back into the design process. The results show that tall timber towers are feasible, with substantial but surmountable questions outstanding. By providing thought provoking yet credible solutions for the design of tall timber buildings and exceeding current limits, the project can inspire the design community to think beyond the status quo and embrace the possibilities offered by timber construction.
机译:该研究项目旨在使真正的高层木结构建筑成为现实。通过理论设计和物理测试的结合,这项研究证明了在比以前更大的高度上木材建筑的可行性。通过将理论设计的局限性推到超高层领域,有时超出了使用当前材料和建筑技术所能达到的范围,这项研究还提出了下一代工程化植物基材料的要求。该研究是学者,从业建筑师和从业结构工程师之间的合作。方法是通过设计进行研究,然后通过研究进行设计。木材塔的设计远远超出了现有的高度,并进行了分析以了解它们如何站立以及哪些区域对于进一步研究最关键。通过将备受推崇的建筑和结构设计师与一流大学的研究能力相结合,该项目为设计和研究社区内部和之间的跨学科参与创建了先例设定模型。通过将木材的典范设计与大学的研究能力相结合,该项目为高层木材建筑的设计变革提供了真正的机遇。确定必要的细节和连接,并确定关于材料和结构性能的“未知”。该大学执行了一项测试计划,以调查这些未知因素并验证设计方法。测试程序的结果和新见解将反馈到设计过程中。结果表明,高大的木塔是可行的,存在大量但可克服的问题。通过为高层木结构建筑设计提供令人发指的,可靠的解决方案,并超越当前的限制,该项目可以激发设计界进行超越现状的思考,并接受木结构建筑提供的可能性。

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  • 来源
    《The journal of architecture》 |2017年第1期|104-122|共19页
  • 作者单位

    University of Cambridge, UK,Smith and Wallwork, UK,PLP/Architecture, UK;

    University of Cambridge, UK,Smith and Wallwork, UK,PLP/Architecture, UK;

    University of Cambridge, UK,Smith and Wallwork, UK,PLP/Architecture, UK;

    University of Cambridge, UK,Smith and Wallwork, UK,PLP/Architecture, UK;

    University of Cambridge, UK,Smith and Wallwork, UK,PLP/Architecture, UK;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:24:36

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