首页> 外文期刊>Engineering Structures >Probabilistic seismic resilience quantification of a reinforced masonry shear wall system with boundary elements under bi-directional horizontal excitations
【24h】

Probabilistic seismic resilience quantification of a reinforced masonry shear wall system with boundary elements under bi-directional horizontal excitations

机译:双向水平激励下边界元素的增强砌体剪力墙系统的概率地震弹性量化

获取原文
获取原文并翻译 | 示例

摘要

The concept of resilience is gaining increased attention in disaster management due to the recent awareness of the need to reduce the detrimental post-event effects of natural disasters, e.g., earthquakes. Resilience is a practical concept that includes pre-event (preparedness and mitigation) and post-event (response and recovery) activities. Quantitative resilience assessment approaches are needed to compare the available mitigation stra-tegies to decide on the most suitable strategy and provide better support for decision-making procedures. In this study, a methodology for quantifying the seismic resilience of reinforced masonry shear wall (RMSW) buildings with end-confined masonry boundary elements is implemented. The uncertainties associated with structural and non-structural losses and estimated recovery time uncertainties are considered while quantifying the resilience index of RMSW buildings. The archetype buildings studied have 8-, 10-, and 12-storey heights and are located in Vancouver, representing a high seismic zone in Canada. First, a numerical model was developed using OpenSees to derive the fragility surface for the studied archetypes subjected to bi-directional horizontal excitation. Second, a Monte Carlo simulation was performed to quantify the resilience index of each archetype considering the above-mentioned uncertainties. The results prove the robustness of ductile RMSW buildings having end-confined MBEs in mitigating the losses associated with disaster events. Additionally, the findings provide comprehensive and valuable information for earthquake mitigation measures and disaster risk reduction programmes.
机译:由于最近的意识,灾害管理的概念在灾害管理中增加了灾害管理,这是为了减少自然灾害的有害事件效应,例如地震。弹性是一种实用的概念,包括前列前(准备和缓解)和事件后(响应和恢复)活动。需要定量的恢复性评估方法,以比较可用的缓解反叛器,以决定最合适的策略,并为决策程序提供更好的支持。在本研究中,实现了一种用于量化具有终端限制砌体边界元素的增强砌体剪力墙(RMSW)建筑物的地震恢复的方法。在量化RMSW建筑物的弹性指数的同时考虑了与结构和非结构损失和估计恢复时间不确定性相关的不确定性。学习的原型建筑物有8-,10-和12层高的高度,位于温哥华,代表加拿大的高地震区。首先,使用Opense开发了一个数值模型,以导出研究的脆性表面,用于进行双向水平激发的研究。其次,考虑上述不确定因素来执行蒙特卡罗模拟以量化每种原型的弹性指数。结果证明了延展性RMSW建筑物的鲁棒性,其具有终端限制MBES,以减轻与灾难事件相关的损失。此外,调查结果还提供了综合性和有价值的地震减缓措施和减少灾害风险方案信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号