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Seismic evaluation of cemented material dams -A case study of Tobetsu Dam in Japan

机译:胶结材料大坝的抗震评估-以日本户别水坝为例

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摘要

Trapezoidal Cemented Sand and Gravel Dam, namely Trapezoid CSG, is a new type of dam. Due to lack of dynamic studies in the field of CSG dam, this research was performed to analyze Trapezoidal CSG dam using dynamic Finite element method with ABAQUS Software. To investigate possible earthquake-induced damages, fragility curves are plotted based on damage index, the length of the cracks created at the dam base and the area of cracked elements in the dam. The seismic analysis indicated that minimum and maximum tensions are generated in the heel and toe of the dam, respectively. According to the fragility curves, with increase in PGA, the possibility of the exceeding the defined limit state is increased. However, the rate of increment is significantly reduced after PGA=0.4 g. Also, the same result is achieved for the second limit state. The "area of cracked elements" is more conservative criterion than the "crack length at the dam base", especially at PGA<0.4 g. As conclusion, CSG dams, despite of being made of poor materials in comparison with concrete dams, show good resistance, and even in some situations, better performance than the weighted concrete dams.
机译:梯形水泥砂砾石坝,即梯形CSG,是一种新型水坝。由于在CSG大坝领域缺乏动态研究,本研究利用ABAQUS软件采用动态有限元方法来分析梯形CSG大坝。为了研究可能的地震造成的破坏,根据破坏指数,在坝基处产生的裂缝的长度以及坝中裂缝单元的面积绘制了易损性曲线。地震分析表明,在坝的后跟和脚趾分别产生了最小和最大张力。根据脆性曲线,随着PGA的增加,超过定义的极限状态的可能性也会增加。但是,在PGA = 0.4 g之后,增加速率显着降低。同样,对于第二极限状态也获得相同的结果。 “裂缝元素的面积”比“坝基裂缝长度”更为保守,尤其是在PGA <0.4 g的情况下。结论是,CSG大坝尽管与混凝土大坝相比材质较差,但仍具有良好的抵抗力,甚至在某些情况下,其性能也比配重混凝土大坝更好。

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