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REDUNDANCY-BASED SAFETY PERFORMANCE OPTIMIZATION OF LARGE-SCALE GLASS FACADE STRUCTURES

机译:基于冗余的大型玻璃门面结构的安全性能优化

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Structural integrity of large-scale glass fa(c)ades is imperative for public safety.Different from traditional structures,glass panels are brittle in nature; consequently glass fa(c)ade structures are vulnerable to vertical and horizontal loads.The situation is however exacerbated due to the fact that the space embraced by a glass facade typically is a densely populated public area.Therefore,structural safety of large-scale glass fa(c)ades is one of the major challenges facing today's engineers.To this end,this paper proposes the application of safety performance optimization based on phased-setting-redundancy during the damage course of glass fa(c)ade structures.Two of the most serious damage forms of a glass fa(c)ade structure are progressive collapse and glass falling.To the component damage stage and structure damage stage,strength redundancy and structure redundancy will enhance partial load carrying capacity and integrity of the structure respectively,impeding progressive collapse through providing alternate load paths.During the glass damage phase,redundancy settings based on different timings are useful for keeping glass panels from cracking,falling and injury accident.Considering redundancy-based optimization measures during conceptual design,front-end engineering design and detailed engineering design can improve the reliability and durability of glass fa(c)ade structures.This concept can be adopted to improve long-term performance of glass fa(c)ade structures,develop safe designs under special loads and under impact of disasters.
机译:大规模玻璃FA(c)ades的结构完整性对于公共安全是公共安全的必要条件。传统结构的不同,玻璃面板本质上是脆性的;因此,玻璃Fa(c)宽度结构容易受到垂直和水平载荷的影响。然而,由于玻璃门面的空间通常是浓密的人口稠密的公共区域的事实,情况加剧了这种情况。因此,大型玻璃的结构安全FA(c)广告是当今工程师面临的主要挑战之一。为此,本文提出了在玻璃FA(c)ade结构的损伤过程中基于相控算冗余的安全性能优化的应用。玻璃FA(c)ade结构的最严重的损坏形式是逐步崩溃和玻璃落下。对于部件损坏阶段和结构损伤阶段,强度冗余和结构冗余将分别提高结构的部分载荷承载能力和完整性,阻碍通过提供替代负载路径来逐渐崩溃。玻璃伤害阶段,基于不同时间的冗余设置可用于保持玻璃面板破解,下降和伤害事故。在概念设计期间,前端工程设计和详细的工程设计中的基于冗余的优化措施可以提高玻璃FA(c)ade结构的可靠性和耐用性。可以采用概念来改善长 - 玻璃FA(c)ADE结构的术语性能,在特殊负荷和灾害的影响下开发安全设计。

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