Evaluation of seismic residual capacity ratio for reinforced concrete structures

Alex V. Shegay , Kota Miura , Kisho Fujita , Yu Tabata , Masaki Maeda , Matsutaro Seki
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引用次数: 3

Abstract

Use of indices that quantify the seismic residual capacity of buildings damaged in earthquakes is one way to draw judgements on the building's safety and possibility of future use. In Japanese damage assessment guidelines, several approximate calculation methods exist to evaluate the residual capacity of buildings based on visually observed damage and simplifying assumptions on the nature of the building's response mechanism and member capacities. While these methods provide a useful residual capacity ratio that enables a ‘relative’ comparison between buildings, the exact relationship to a physically meaningful residual capacity is unclear. The aim of this study is to benchmark the ‘approximations’ of residual capacity. To do so, a shake-table test was conducted on a ¼ scale 4-storey RC structure and a residual capacity evaluation was undertaken based on observed damage states. With the help of a numerical model, a benchmark residual capacity at each of the damage states is determined and compared to the approximate residual capacity calculation results via guidelines. It was found that approximate methods are generally accurate prior to yield but can become overly conservative post-yield. Simplifying assumptions of equal member deformation capacity used in the residual capacity ratio calculation was found to be suitable given constraints of rapid field evaluations.

钢筋混凝土结构抗震剩余承载力比的评价
使用量化地震中受损建筑的地震残余承载力的指标是判断建筑安全性和未来使用可能性的一种方法。在日本的损伤评估指南中,有几种近似计算方法可以根据肉眼观察到的损伤来评估建筑物的剩余能力,并简化对建筑物反应机制和构件能力性质的假设。虽然这些方法提供了有用的剩余容量比,可以在建筑物之间进行“相对”比较,但与物理上有意义的剩余容量的确切关系尚不清楚。本研究的目的是对剩余容量的“近似值”进行基准测试。为此,在¼规模的4层RC结构上进行了振动台测试,并根据观察到的损伤状态进行了剩余容量评估。在数值模型的帮助下,确定每个损伤状态下的基准剩余容量,并通过指南将其与近似剩余容量计算结果进行比较。研究发现,近似方法在屈服前通常是准确的,但在屈服后可能会变得过于保守。考虑到快速现场评估的约束条件,简化剩余承载力比计算中使用的等构件变形能力假设是合适的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.20
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