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Seismic behavior of cracked concrete gravity dams.

机译:开裂的混凝土重力坝的抗震性能。

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摘要

Two models are proposed to analyze the seismic behavior of cracked concrete gravity dams in order to assess the safety against sliding and overturning. A proposed rigid model first designed for cracked concrete dams considers the geometry of the cracked dam and includes all possible modes of motion with 3 degrees-of-freedom. The other model proposed is a flexible finite element model, which represents a penalty approach, based on the incremental displacement constraint equations between the nodes on both sides of the crack.; All governing equations and corresponding conditions for every mode of motion are derived for the rigid model. Verifications show that this simple rigid model is effective in the prediction of the seismic response of cracked dams. Its applications to the cracked Koyna Dam and a typical dam cracked at the base demonstrate its advantages of simplicity, accuracy and ability to reveal the important features of seismic behavior of cracked concrete dams.; The flexible model is verified with available solutions, showing its very good applicability in estimation of the dynamic response of cracked concrete dams, owing to its adequate treatment of contact conditions at the crack. Its applications to Koyna Dam and a typical dam prove its adequacy to the cases of cracks at both the base and at a height.; Computations with both proposed models show that the cracked Koyna Dam and the cracked typical dam are safe under the earthquakes considered provided the effective coefficient of friction is sufficient large. However, both models suggest that the rocking mode must be considered since it affects the sliding displacement even if the rocking itself is very small. The partial dam above the crack might experience drifting if severe impact occurs. Therefore even a large coefficient of friction cannot prevent sliding. The residual sliding displacement along the crack for a specific cracked dam depends on factors such as coefficient of friction, water level, peak acceleration of earthquake and its details.; The consistency of two proposed models is noted when increasing the stiffness in the flexible model. This suggests that the rigid model is applicable to the case when the upper part of the cracked dam is very stiff, while the flexible model is capable of revealing more details of the seismic behavior of cracked dams.
机译:为了评估抗滑移和倾覆的安全性,提出了两种模型来分析开裂的混凝土重力坝的抗震性能。首先为裂缝混凝土坝设计的建议刚性模型考虑了裂缝坝的几何形状,并包括具有3个自由度的所有可能的运动模式。提出的另一个模型是柔性有限元模型,该模型表示一种惩罚方法,该模型基于裂纹两侧节点之间的增量位移约束方程。对于刚性模型,导出了每种运动模式的所有控制方程式和相应条件。验证表明,这种简单的刚性模型可有效预测裂坝的地震反应。它在开裂的科伊纳(Koyna)大坝和底部开裂的典型大坝中的应用证明了其简单,准确和能够揭示开裂的混凝土大坝抗震性能的重要特征的优势。该柔性模型已通过可用的解决方案进行了验证,由于其对裂缝处的接触条件进行了充分的处理,因此它在估算开裂混凝土坝的动力响应方面具有很好的适用性。它在Koyna大坝和典型大坝中的应用证明了其足以应付基础和高处的裂缝。两种模型的计算结果表明,只要有效摩擦系数足够大,开裂的科伊纳水坝和开裂的典型水坝在考虑的地震中都是安全的。但是,两个模型都建议必须考虑摇摆模式,因为即使摇摆本身很小,它也会影响滑动位移。如果发生严重冲击,裂缝上方的部分水坝可能会发生漂移。因此,即使大的摩擦系数也不能防止滑动。特定裂缝坝沿裂缝的残余滑动位移取决于诸如摩擦系数,水位,地震峰值加速度及其细节等因素。在柔性模型中增加刚度时,会注意到两个建议模型的一致性。这表明刚性模型适用于开裂坝上部非常坚硬的情况,而柔性模型能够揭示开裂坝的地震行为的更多细节。

著录项

  • 作者

    Zhu, Xueye.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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