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Integrated duration effects on seismic performance of concrete gravity dams using linear and nonlinear evaluation methods

机译:线性和非线性评估方法综合工期对混凝土重力坝抗震性能的影响

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For the assessment of seismic performance of concrete gravity dams, ground motions with horizontal and vertical components are usually selected as seismic excitations. Although various definitions have been proposed to compute strong motion duration from a single component (either horizontal or vertical one) of seismic excitations, duration definitions accounting for the contributions of all components of seismic excitations are still lacking. In order to bridge the gap between duration definitions and multicomponent seismic excitations used for simulation, a concept of integrated duration is proposed in this contribution. With the definition of integrated duration, a unified strong motion duration can be calculated for a seismic excitation with multiple components, which facilitates the quantitative evaluation of duration effects. To examine the influence of integrated duration on the seismic performance of concrete gravity dams, both the linear and nonlinear evaluation methods considering the dam-reservoirfoundation interaction are adopted in this study. The linear evaluation method is based on demand capacity ratio, cumulative overstress duration and spatial extent of overstressed regions, whereas the nonlinear seismic analysis of concrete gravity dam-water-foundation systems is on the basis of a Concrete Damaged Plasticity model. 20 real earthquake records with a broad range of durations are selected as seismic excitations to quantify the correlation between the proposed integrated duration and the seismic performance of concrete gravity dams. It is found that the cumulative overstress duration, the accumulative damage and the residual plastic deformation are strongly affected by the integrated duration. Apart from the integrated duration effects, the influence of the vertical component of ground motions is also discussed. (c) 2015 Elsevier Ltd. All rights reserved.
机译:为了评估混凝土重力坝的抗震性能,通常选择具有水平和垂直分量的地震动作为地震激励。尽管已经提出了各种定义来根据地震激励的单个分量(水平分量或垂直分量)来计算强运动持续时间,但是仍然缺少考虑地震激励所有分量的贡献的持续时间定义。为了弥合持续时间定义和用于模拟的多分量地震激励之间的差距,在此贡献中提出了集成持续时间的概念。通过定义持续时间,可以为具有多个分量的地震激励计算统一的强烈运动持续时间,这有助于对持续时间影响进行定量评估。为了研究持续时间对混凝土重力坝抗震性能的影响,本研究采用了考虑坝-水库-基础相互作用的线性和非线性评估方法。线性评估方法基于需求能力比,累积超应力持续时间和超应力区域的空间范围,而混凝土重力坝-水基础系统的非线性地震分析基于混凝土损伤可塑性模型。选择20个具有广泛持续时间的真实地震记录作为地震激励,以量化建议的综合持续时间与混凝土重力坝抗震性能之间的相关性。发现累积的过应力持续时间,累积的破坏和残余的塑性变形受积分持续时间的强烈影响。除了积分持续时间效应外,还讨论了地震动垂直分量的影响。 (c)2015 Elsevier Ltd.保留所有权利。

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