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首页> 外文期刊>Bulletin of earthquake engineering >Probabilistic seismic performance evaluation of SMA-braced steel frames considering SMA brace failure
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Probabilistic seismic performance evaluation of SMA-braced steel frames considering SMA brace failure

机译:考虑SMA支架衰竭的SMA支撑钢帧的概率抗震性能评价

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摘要

This study explores seismic performance of steel frame buildings with SMA-based self-centering bracing systems using a probabilistic approach. The self-centering bracing system described in this study relies on superelastic response of large-diameter cables. The bracing systems is designed such that the SMA cables are always stressed in tension. A four-story steel frame building characterized until collapse in previous research is selected as a case-study building. The selected steel frame building is designed with SMA bracing systems considering various design parameters for SMA braces. Numerical models of these buildings are developed by taking into account the ultimate state of structural components and SMA braces as well as the effect of gravity frames on lateral load resistance. Nonlinear static analyses are conducted to assess the seismic characteristics of each frame and to examine the effect of SMA brace failure on the seismic load carrying capacity of SMA-braced frames. Incremental dynamic analyses (IDA) are performed to compute seismic response of the designed frames at various seismic intensity levels. The results of IDA are used to develop probabilistic seismic demand models for peak inter-story and residual inter-story drifts. Seismic demand hazard curves of peak and residual inter-story drifts are generated by convolving the ground motion hazard with the probabilistic seismic demand models. Results show that steel frames designed with SMA bracing systems provide considerably lower probability of reaching at a damage state level associated with residual drifts compared to a similarly designed steel moment resisting frame, especially for seismic events with high return periods. This indicates reduced risks for the demolition and collapse due to excessive residual drifts for SMA braced steel frames.
机译:本研究探讨了使用概率方法与SMA自定心支撑系统的钢框架建筑的地震性能。本研究中描述的自定心支撑系统依赖于大直径电缆的超弹性响应。支撑系统设计成使得SMA电缆始终强调张力。一个四层钢框架建筑,直到以前研究的崩溃被选为案例研究建筑。所选钢框架建筑设计有考虑SMA支架的各种设计参数的SMA支撑系统。通过考虑结构部件和SMA支架的最终状态以及重力框架对横向载荷电阻的影响,开发了这些建筑物的数值模型。进行非线性静态分析以评估每个框架的地震特性,并检查SMA支架失效对SMA-支撑框架的地震载荷承载力的影响。执行增量动态分析(IDA)以计算各种地震强度水平的设计帧的地震响应。 IDA的结果用于开发概率的地震需求模型,用于峰值际故事和剩余际层次漂移。通过将地面运动危害与概率的地震需求模型卷积,产生峰值和剩余故事漂移的地震需求危险曲线。结果表明,与类似设计的钢力矩抵抗框架相比,设计与SMA支撑系统设计的钢帧可相当于与残余漂移相关的损坏状态水平,特别是对于具有高回流周期的地震事件,达到与残余漂移相关的损坏状态。这表明由于SMA支撑钢框架过多的残留漂移,降低了拆除和崩溃的风险。

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