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Quantifying Changes in Structural Design Needed to Account for Aftershock Hazard

机译:量化需要考虑余震危害的结构设计变化

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Aftershocks have the potential to cause severe damage to buildings and threaten life following a major earthquake. However, their effect on seismic hazards is not explicitly accounted for in modern building design codes, nor in emerging methodologies such as performance-based seismic design. The objective of this study was to develop a methodology that can quantify the changes that would be needed in the structural design of a building to account for aftershock (AS) hazards and illustrate it using a basic nonlinear model of a building. In other words, what changes to a structural design would be needed such that the building has the same collapse probability for the combined mainshock and aftershock (MS + AS) hazard as the collapse probability for the original building, subjected to the mainshock (MS) only? The total collapse probability is computed using a combination of seismic fragility results convolved with the two types of hazard curves, namely, a typical hazard curve and an AS hazard curve. An illustrative example is presented for a two-story woodframe building and the change in structural design needed for this scenario is found to be an approximately 10% increase in both stiffness and strength for the first and second stories. Although this is illustrated on only one building, it demonstrates that further work related to consideration of AS hazards may be justified. (C) 2015 American Society of Civil Engineers.
机译:大地震后,余震可能会严重破坏建筑物并威胁生命。但是,它们对地震危害的影响在现代建筑设计规范中或在基于性能的地震设计等新兴方法中均未明确说明。这项研究的目的是开发一种方法,该方法可以量化建筑物结构设计中需要考虑到余震(AS)危害的变化,并使用建筑物的基本非线性模型对其进行说明。换句话说,需要对结构设计进行哪些更改,以使建筑物对主震和余震(MS + AS)组合的危害具有与遭受主震(MS)破坏的原始建筑物相同的坍塌概率只要?总塌陷概率是通过将地震易损性结果与两种类型的危险曲线(即典型危险曲线和AS危险曲线)进行卷积计算而得出的。给出了一个两层木结构建筑的说明性示例,发现该方案所需的结构设计变化使第一层和第二层的刚度和强度均增加了约10%。尽管仅在一栋建筑物上进行了说明,但它表明与AS危害相关的进一步工作可能是合理的。 (C)2015年美国土木工程师学会。

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