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Robustness Design For Tall Timber Buildings

机译:高大木材建筑的鲁棒性设计

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With the ever-increasing height of timber buildings, the complexity of timber as a structural material gives rise to behaviors not previously studied by engineers. An urgent call is needed regarding their performance in damage scenarios: activating alternative load paths in tall timber buildings is not the same as in tall buildings made with steel and concrete. In this paper we propose a robustness framework covering all building materials, whose application in timber may lead to new conceptual designs for the next generation of tall timber buildings. Qualitatively, the importance of building scale and the distinction between localized and systematic exposures are discussed, and how existing supertall structures can be an example for future generations of tall timber buildings. Quantitatively, the robustness index is introduced alongside a method to calculate the performance of a given building regarding robustness, in order to find the most cost-effective structural solutions for improved robustness. A three-level application recommendation is made, depending on the importance of the building in question. Primarily, the paper highlights the importance of conceptual design to achieve structural robustness and encourages the practicing engineering community to use the proposed framework to quantitatively come up with the new generation of tall timber buildings.
机译:随着木材建筑的不断增加的高度,木材作为结构材料的复杂性导致工程师之前没有研究过的行为。关于他们在损坏方案中的表现需要紧急呼叫:在高高的木材建筑物中激活替代负载路径与用钢和混凝土制成的高层建筑物不同。在本文中,我们提出了一种稳健的框架,涵盖了所有建筑材料,其在木材中的应用可能导致下一代高高的木材建筑的新概念设计。讨论了建筑规模和局部和系统曝光之间的区分的重要性,以及现有的超级结构如何成为高层木材建筑的后代的示例。定量地,稳健性指数与一种方法一起引入,以计算关于鲁棒性的给定建筑物的性能,以找到最具成本效益的结构解决方案,以改善鲁棒性。根据有关建筑物的重要性,制定了三级应用推荐。主要是,本文突出了概念设计实现结构鲁棒性的重要性,并鼓励实践工程界使用所提出的框架来定量上高高的木材建筑。

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