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Effect of biaxial stress state on seismic fragility of concrete gravity dams

机译:双轴应力状态对混凝土重力坝抗震脆性的影响

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摘要

Dams are important structures for management of water supply for irrigation or drinking, flood control, and electricity generation. In seismic regions, the structural safety of concrete gravity dams is important due to the high potential of life and economic loss if they fail. Therefore, the seismic analysis of existing dams in seismically active regions is crucial for predicting responses of dams to ground motions. In this paper, earthquake response of concrete gravity dams is investigated using the finite element (FE) method. The FE model accounts for dam-water-foundation rock interaction by considering compressible water, flexible foundation effects, and absorptive reservoir bottom materials. Several uncertainties regarding structural attributes of the dam and external actions are considered to obtain the fragility curves of the dam-water-foundation rock system. The structural uncertainties are sampled using the Latin Hypercube Sampling method. The Pine Flat Dam in the Central Valley of Fresno County, California, is selected to demonstrate the methodology for several limit states. The fragility curves for base sliding, and excessive deformation limit states are obtained by performing non-linear time history analyses. Tensile cracking including the complex state of stress that occurs in dams was also considered. Normal, Log-Normal and Weibull distribution types are considered as possible fits for fragility curves. It was found that the effect of the minimum principal stress on tensile strength is insignificant. It is also found that the probability of failure of tensile cracking is higher than that for base sliding of the dam. Furthermore, the loss of reservoir control is unlikely for a moderate earthquake.
机译:大坝是用于灌溉或饮酒,防洪和发电供水的重要组织。在地震区,由于寿命高,混凝土重力坝的结构安全性很重要,如果失败,经济损失很高。因此,地震活动区域的现有水坝的地震分析对于预测水坝对地面运动的反应至关重要。本文采用有限元(Fe)法研究了混凝土重力坝的地震响应。通过考虑可压缩水,柔性基础效应和吸收储层底部材料,FE模型占大坝水基岩石相互作用。关于大坝和外部措施的结构属性的几种不确定性被认为是获得坝 - 水基岩体岩石系统的脆弱曲线。采用拉丁超立体采样方法对结构不确定性进行采样。 California弗雷斯诺县中央谷的松树坝被选中,以展示几个限制状态的方法。通过执行非线性时间历史分析来获得基础滑动的脆弱曲线和过度变形极限状态。还考虑了包括在坝中发生的复杂应力状态的拉伸裂缝。对于脆弱曲线,将考虑正常,逻辑正常和威布尔分布类型。发现最小主应力对拉伸强度的影响是微不足道的。还发现拉伸裂纹失效的可能性高于坝的基部滑动的概率。此外,水库控制的损失不太可能是适度地震。

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