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Seismic behaviour of cracked concrete gravity dams

机译:开裂混凝土重力坝的抗震性能

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摘要

A finite element model of incremental displacement constraint equations (IDCE), based on an existing node-to-surface concept, is implemented to deal with dynamic contact surfaces in the seismic behaviour analysis of cracked concrete gravity dams. After verification for sliding, rocking and impact, the IDCE model is applied to study the seismic responses of concrete gravity dams with different profiles and crack locations for a variety of parameters, such as coefficient of friction, water level and type of earthquake, as well as impact damping based on the concept of coefficient of restitution. It is revealed that cracked concrete gravity dams can experience not only sliding and rocking modes, but also the drifting mode in some cases of crack either at the base or at a height. Downstream sliding is normally accompanied by rocking, especially for the cases of crack at a height. Due to rocking and drifting, a cracked dam may still acquire a certain amount of residual sliding even if the effective coefficient of friction is relatively high.
机译:基于现有的节点-面概念,建立了增量位移约束方程(IDCE)的有限元模型,以处理裂隙混凝土重力坝的地震行为分析中的动态接触面。在对滑动,摇摆和冲击进行验证之后,使用IDCE模型来研究具有不同轮廓和裂缝位置的混凝土重力坝在各种参数(例如摩擦系数,水位和地震类型)下的地震响应。基于恢复系数概念的冲击阻尼。结果表明,开裂的混凝土重力坝不仅会经历滑动和摇摆模式,而且在某些情况下甚至在底部或高处也会出现漂移模式。下游滑动通常伴有摇摆,尤其是在高处出现裂纹的情况下。由于晃动和漂移,即使有效摩擦系数相对较高,开裂的坝仍可能会产生一定量的残余滑动。

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