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Uncertainty quantification of stability and damage detection parameters of coupled hydrodynamic-ground motion in concrete gravity dams

机译:混凝土重力坝水动力-地震动耦合稳定性和损伤检测参数的不确定度量化

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摘要

In this paper, models of the global system of the Koyna dam have been created using ABAQUS software considering the dam-reservoir-foundation interaction. Non coupled models and the coupled models were compared regarding the horizontal displacement of the dam crest and the differential settlement of the dam base in clay foundation. Meta models were constructed and uncertainty quantification process was adopted by the support of Sobol's sensitivity indices considering five uncertain parameters by exploiting Box-Behnken experimental method. The non coupled models results determined overestimated predicted stability and damage detection in the dam. The rational effects of the reservoir height were very sensitive in the variation of the horizontal displacement of the dam crest with a small interaction effect with the beta viscous damping coefficient of the clay foundation. The modulus of elasticity of the clay foundation was the decisive parameter regarding the variation of the differential settlement of the dam base. The XFEM approach has been used for damage detection in relation with both minimum and maximum values of each uncertain parameter. Finally the effects of clay and rock foundations were determined regarding the resistance against the propagation of cracks in the dam, where the rock foundation was the best.
机译:在本文中,考虑到大坝-水库-基础之间的相互作用,使用ABAQUS软件创建了Koyna大坝全球系统模型。比较了非耦合模型和耦合模型的黏土基础中坝顶的水平位移和坝基的差异沉降。利用Box-Behnken实验方法,建立了元模型,并在Sobol灵敏度指标的支持下,考虑了五个不确定性参数,采用了不确定性量化过程。非耦合模型结果确定了高估的大坝预测稳定性和破损检测。在坝顶水平位移的变化中,储层高度的合理影响非常敏感,而与粘土地基的β粘性阻尼系数的相互作用较小。粘土基础的弹性模量是关于坝基差异沉降变化的决定性参数。 XFEM方法已用于与每个不确定参数的最小值和最大值相关的损坏检测。最后,确定了粘土和岩石基础对坝体中裂缝扩展的抵抗力,而岩石是最好的。

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