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Nonlinear seismic response of tall concrete-faced rockfill dams in narrow canyons

机译:狭窄峡谷中混凝土面板堆石坝的非线性地震反应

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The seismic behavior of tall concrete face rockfill dams in narrow canyons is investigated, based on numerical simulation of the staged construction, creep settlements, reservoir impoundment and seismic shaking of the dam. The study takes into account the flexibility of the canyon rock, the hydrodynamic effects and potential dynamic rockfill settlements. The static analysis uses a hyperbolic model for the rockfill, whereas the dynamic analysis uses a nonlinear hysteretic model, which accounts for the initial dynamic stiffness and produces hysteresis loops in agreement with the experimental data regarding the shear modulus and damping ratio. A damage plasticity model is used for the reinforced concrete, whereas frictional contact behavior is considered at the base and vertical walls of the concrete slab panels. An existing 150-m-high dam is used to investigate some key issues on the seismic behavior of such dams subjected to upstream - downstream and vertical excitation. Emphasis is placed on the evaluation of the tensile stresses within the slab panels, the compressive stresses at the slab-to-slab vertical interfaces and the opening of the joints. Moreover, the effect of potential dynamic settlements on both the slab stresses and joint openings is investigated. Recommendations for increasing the dam safety and reducing the water leakage through the dam body are given.
机译:基于分步施工,坝体蠕变沉降,水库蓄水和地震震动的数值模拟,研究了狭窄峡谷中高混凝土面板堆石坝的抗震性能。该研究考虑了峡谷岩石的柔韧性,水动力效应和潜在的动态堆石沉降。静态分析对堆石场使用双曲线模型,而动态分析则使用非线性磁滞模型,该模型考虑了初始动态刚度并产生与剪切模量和阻尼比的实验数据一致的磁滞回线。损伤塑性模型用于钢筋混凝土,而在混凝土面板的底壁和垂直壁处考虑了摩擦接触行为。现有的150米高的大坝用于调查受上游,下游和垂直激励作用的此类大坝的地震行为的一些关键问题。重点放在评估平板面板内的拉应力,平板到平板垂直界面处的压缩应力以及接头的开口。此外,研究了潜在的动态沉降对板应力和接缝开孔的影响。提出了提高大坝安全性和减少通过大坝主体的漏水的建议。

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