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Three-degree-of-freedom rigid model for seismic analysis of cracked concrete gravity dams

机译:裂缝混凝土重力坝地震分析的三自由度刚性模型

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摘要

A rigid model with three-degrees-of-freedom is proposed for the purpose of seismic analysis of cracked concrete gravity dams. The model considers the geometry of the dam and all its possible modes of motion: sliding, rocking, rock-sliding, and drifting. The governing equations for all the modes are derived with the Mohr-Coulomb friction assumption at the crack, and corresponding conditions to initiate and maintain the modes are also given. For impact that follows rocking and drifting modes, postimpact velocities of the model are explicitly determined according to the momentum principle and the concept of restitution from classical point collision. Studies with the proposed model on rectangular blocks demonstrate two different types of rocking according to the slenderness. Applications to dams indicate that a large coefficient of friction does not necessarily prevent sliding, and rocking and drifting modes should not be neglected in estimating the stability of concrete gravity dams cracked at the base or at a height.
机译:提出了一种三自由度的刚性模型,用于裂缝混凝土重力坝的地震分析。该模型考虑了大坝的几何形状及其所有可能的运动模式:滑动,摇摆,岩石滑动和漂移。利用裂纹处的莫尔-库仑摩擦假设推导了所有模式的控制方程,并给出了引发和维持模式的相应条件。对于跟随摇摆和漂移模式的冲击,根据动量原理和从经典点碰撞恢复的概念,明确确定模型的后碰撞速度。在矩形块上使用建议的模型进行的研究表明,根据细长度,摇摆有两种不同类型。在大坝上的应用表明,大的摩擦系数并不一定能防止滑动,在估算在底部或高处开裂的混凝土重力坝的稳定性时,不应忽略摇摆和漂移模式。

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