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Static Concept for Long-Span and High-Rise Glass Structures

机译:大跨度和高层玻璃结构的静态概念

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摘要

Lightweight, transparent, long-spanned, and high-rise constructions characterize the vision of many architects. Glass is at present the best-performing material where high transparency and durability are the main requisites, but its brittleness limits its ability to provide structural engineered solutions. Large-spanned glass beams are most often built with multiple splice lamination, but this technique presents some problems, such as increased dead load and lack of redundancy, ductility, structural hierarchy, and economy. An alternative strategy has been developed in the form of multiple segmented bolted beams, but the holes this requires inevitably weaken the glass. Using the results of a 10-year-long theoretical and experimental study carried out at the University of Pisa and following the principles of fail-safe design, the main purpose of this work is to present a new static concept for hybrid, segmented, esogen-endogen-compressed, and buckling-restrained glass structures. This concept represents the latest evolution of both the Travi Vitree Tensegrity (TVT) and the Solidi Vitrei Tensegrity (SVT) constructional systems. Finite element models (FEM) calibrated on the experimental findings demonstrate the feasibility of the new concept and its good performance at the ultimate and serviceability-limit states.
机译:轻巧,透明,长跨度和高层建筑是许多建筑师的愿景。玻璃是目前性能最佳的材料,其中主要要求高透明度和耐用性,但玻璃的脆性限制了其提供结构工程解决方案的能力。大跨度的玻璃梁通常是通过多层拼接来构建的,但是这种技术存在一些问题,例如静载增加,缺乏冗余,延展性,结构层次和经济性。已开发出多种分段螺栓梁形式的替代策略,但是不可避免地需要打孔,这会削弱玻璃的强度。利用比萨大学进行的为期10年的理论和实验研究的结果,并遵循故障安全设计的原则,这项工作的主要目的是为混合,分段,雌性激素提出一个新的静态概念。 -内源压缩和屈曲约束的玻璃结构。这个概念代表了Travi Vitree Tensegrity(TVT)和Solidi Vitrei Tensegrity(SVT)建筑系统的最新发展。根据实验结果校准的有限元模型(FEM)证明了新概念的可行性以及其在极限和使用极限状态下的良好性能。

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  • 来源
    《Journal of Architectural Engineering》 |2018年第1期|04017030.1-04017030.9|共9页
  • 作者单位

    Dept. of Energy, Systems, Territory and Construction Engineering, Univ. of Pisa, Largo Lazzarino 1, Pisa 56122, Italy;

    Dept. of Energy, Systems, Territory and Construction Engineering, Univ. of Pisa, Largo Lazzarino 1, Pisa 56122, Italy;

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