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Comparison of methods to develop risk-targeted seismic design maps

机译:开发风险目标地震设计地图的方法比较

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The seismic design of structures according to current codes is generally carried out using a uniform-hazard spectrum for a fixed return period, and by employing a deterministic approach that disregards many uncertainties, such as the contribution of earthquake ground motions with return periods other than that assumed for the design. This results in uncontrolled values of the failure probability, which vary with the structure and the location. Risk targeting has recently emerged as a tool for overcoming these limitations, allowing achievement of consistent performance levels for structures with different properties through the definition of uniform-risk design maps. Different countries are implementing the concepts of risk targeting in different ways, and new methods have recently emerged. In the first part of this article, the most well-known approaches for risk targeting are reviewed, with particular focus on the one implemented in recent American design codes, the one based on the use of risk-targeted behaviour factors (RTBF), and an approach based on direct estimation of hazard curves for inelastic response of single-degree-of-freedom systems. The effect of the linearization of the hazard curve is investigated first. A validation of the RTBF approach is then provided, based on comparison with the results of uniform-risk design spectral accelerations for single-degree-of-freedom systems with elastic-perfectly plastic behaviour for two different sites. The effectiveness of the current risk-targeting framework applied in the United States is also investigated. In the last part of the paper, uniform-risk design maps for Europe are developed using the RTBF approach, showing how the seismic design levels may change when moving from a uniform-hazard to a uniform-risk concept.
机译:根据当前码的结构的地震设计通常使用均匀危险的频谱进行固定返回时段,并采用确定性方法来忽视许多不确定性的方法,例如地震地面运动与返回期外的返回时期的贡献假设设计。这导致失效概率的不受控制值,其随着结构和位置而变化。危险目标最近被出现为克服这些限制的工具,通过定义统一风险设计地图,可以实现具有不同性质的结构的一致性水平。不同的国家正在实施以不同方式瞄准的风险概念,最近出现了新方法。在本文的第一部分,审查了最着名的风险目标方法,特别关注在最近的美国设计代码中实施的那个,这是基于使用风险目标的行为因素(RTBF),以及一种基于单型自由度系统的非弹性响应的危险曲线直接估计的方法。首先研究了危险曲线线性化的影响。然后基于与具有弹性 - 自由度系统的均匀风险设计光谱加速度的结果进行比较,提供RTBF方法的验证。还调查了当前风险目标框架的有效性。在本文的最后一部分中,使用RTBF方法开发欧洲统一风险的设计地图,展示如何在从统一风险概念的统一危害中移动时抗震设计水平如何变化。

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