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首页> 外文期刊>Engineering Structures >Influence of exterior infill walls on the performance of RC frames under tsunami loads: Case study of school buildings in Sri Lanka
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Influence of exterior infill walls on the performance of RC frames under tsunami loads: Case study of school buildings in Sri Lanka

机译:外部填充壁对海啸负荷下RC框架性能的影响:斯里兰卡学校建筑案例研究

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This paper assesses the structural performance of RC frame buildings subjected to tsunami-induced loads, accounting for the influence of exterior masonry infill walls on the overall structural performance. Both the in plane and out-of-plane contributions of masonry infill walls are considered in the analysis. To illustrate the importance of accounting for exterior infill walls in the response of structures to tsunami, two case study buildings are considered and modelled in 3D. The first case study is a typical two-storey school building in Sri Lanka, and the second is a modified version of this design configuration proposed in Sri Lanka after the 2004 Indian Ocean Tsunami to provide more redundancy against scour. Through these case studies, the effect of the non-uniform distribution of infill walls in the building and their failure (or ?breakaway?) on building performance is considered. The building performance is characterized by a number of response parameters (i.e., first yielding, development of two hinges, and shear failure in ground floor columns). The paper shows that the in plane behaviour of exterior infill walls increases the flexural capacity and lateral stiffness of the structure, as would be expected. However, it also shows that an assumption of non-breakaway infill walls consistently leads to premature structural failure mechanisms, associated with the concentration of drag forces on seaward columns only. The results demonstrate that a good estimation of the location and occurrence of shear failure in structural elements can only be achieved by explicitly considering the out-of-plane behaviour and failure of exterior infill walls during an incremental tsunami load analysis. Finally, the Froude number assumed for the analysis is seen to strongly affect the performance of both structural and non-structural components, highlighting the importance of choosing realistic tsunami properties to perform a reliable capacity assessment.
机译:本文评估了对海啸诱导负荷进行的RC架构建筑物的结构性性能,占外墙灌注墙对整体结构性能的影响。在分析中考虑了砌体填充墙壁的平面和平面外贡献。为了说明在建筑物对海啸的响应中占外部填充墙的重要性,两种案例研究建筑物被考虑并以3D建模。第一个案例研究是斯里兰卡的典型两层学校建筑,第二楼是在2004年印度洋海啸之后斯里兰卡在斯里兰卡提出的这种设计配置的修改版本,为冲刷提供了更多的冗余。通过这些案例研究,考虑了在建筑物中的填充壁的非均匀分布的影响及其失效(或?断裂?)是在建立性能方面的作用。建筑物性能的特点是许多响应参数(即,首先产生,两个铰链的开发,以及地板柱的剪切失效)。本文表明,外部填充壁的平面行为增加了结构的弯曲能力和横向刚度。然而,它还表明,非分离填充壁的假设始终如一地导致过早的结构故障机制,其仅与海柱上的阻力浓度相关联。结果表明,良好的估计结构元件中剪切失效的位置和发生才能通过明确地考虑在增量海啸负荷分析期间外部填充壁的外平面行为和故障来实现。最后,看到用于分析的FRoude号码被认为强烈影响结构和非结构组件的性能,突出了选择现实海啸属性来执行可靠的容量评估的重要性。

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