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Effects of Outlets on Cracking Risk and Integral Stability of Super-High Arch Dams

机译:出口对超高拱坝裂缝风险与整体稳定性的影响

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In this paper, case study on outlet cracking is first conducted for the Goupitan and Xiaowan arch dams. A nonlinear FEM method is then implemented to study effects of the outlets on integral stability of the Xiluodu arch dam under two loading conditions, i.e., normal loading and overloading conditions. On the basis of the case study and the numerical modelling, the outlet cracking mechanism, risk, and corresponding reinforcement measures are discussed. Furthermore, the numerical simulation reveals that (1) under the normal loading conditions, the optimal distribution of the outlets will contribute to the tensile stress release in the local zone of the dam stream surface and decrease the outlet cracking risk during the operation period. (2) Under the overloading conditions, the cracks initiate around the outlets, then propagate along the horizontal direction, and finally coalesce with those in adjacent outlets, where the yield zone of the dam has a shape of butterfly. Throughout this study, a dam outlet cracking risk control and reinforcement principle is proposed to optimize the outlet design, select the appropriate concrete material, strengthen the temperature control during construction period, design reasonable impounding scheme, and repair the cracks according to their classification.
机译:在本文中,首先为Goupitan和Xiaowan Arch Dams进行出口开裂的案例研究。然后实施非线性有限元法以研究出口对Xiluodu拱坝在两个负载条件下的整体稳定性的影响,即正常装载和过载条件。在案例研究和数值模型的基础上,讨论了出口裂缝机构,风险和相应的强化措施。此外,数值模拟显示(1)在正常的负载条件下,出口的最佳分布将有助于坝流表面的局部区域中的拉伸应力释放,并在操作时段期间降低出口裂化风险。 (2)在过载条件下,裂缝在出口周围发起,然后沿水平方向传播,最后与相邻出口中的那些聚结,其中坝的屈服区具有蝴蝶的形状。在本研究过程中,提出了一种坝体出口裂缝风险控制和加固原理来优化出口设计,选择合适的混凝土材料,加强施工期间的温度控制,设计合理的蓄能方案,并根据其分类修复裂缝。

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