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Progressive Collapse Mitigation: Geometrically Nonlinear Catenary Behavior

机译:渐进式塌陷缓解:几何非线性悬链线行为

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Progressive collapse is defined as the spread of a localized structural failure to other structural members resulting in a disproportionate collapse of the global system. Building codes suggest one method of mitigating progressive collapse involves provisions for load resistance through catenary behavior across two-span conditions caused by the loss of column support. In concrete structures, reinforcing steel is one potential source of catenary load carrying capacity. Currently, design codes allow static approximations of the dynamic systems for design. While this approach is appropriate for many structural systems, the catenary behavior of a two span reinforced concrete beam provides opportunities for closer investigation of its static and dynamic behavior. This paper presents analytical and experimental investigations of geometrically nonlinear static and dynamic analyses which characterize the behavior of the catenary system. As a first approximation to the behavior of the complex system, an analysis and experimental evaluation of the behavior of a bare steel wire is examined. Geometrically nonlinear effects, even in the linear elastic regime, are significant. The result of this work is an analytical (and experimentally corroborated) characterization of catenary behavior of reinforcing steel that may be used by researchers, code developers, and designers to estimate catenary capacity under a variety of conditions.
机译:渐进式崩溃的定义是局部结构性故障向其他结构性构件的扩散,导致整体系统崩溃过多。建筑规范建议一种缓解渐进式倒塌的方法涉及通过因失去支柱支撑而引起的跨两个跨度条件的悬链线行为来提供抗荷载能力。在混凝土结构中,钢筋是悬链负荷能力的潜在来源之一。当前,设计代码允许动态系统进行设计的静态近似。尽管此方法适用于许多结构系统,但两跨钢筋混凝土梁的悬链线行为为进一步研究其静态和动态行为提供了机会。本文介绍了几何非线性的静态和动态分析的分析和实验研究,这些分析表征了悬链线系统的行为。作为复杂系统行为的第一近似值,我们对裸钢丝的行为进行了分析和实验评估。即使在线性弹性状态下,几何非线性效应也很重要。这项工作的结果是对钢筋的悬链线行为进行了分析(并在实验上得到证实)表征,研究人员,代码开发人员和设计人员可以使用这些特征来估计各种条件下的悬链线容量。

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