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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >A compression-shear fracture growing on an arch-gravity dam
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A compression-shear fracture growing on an arch-gravity dam

机译:生长在拱形重力水坝上的压缩剪切骨折

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摘要

In the case of a narrow valley, characterized by a strong rock mass, the excavation can be designed according to the so called convergent way. In this case, the mean value of the compression stresses at the dam-foundation joint increases as the dam moves towards down-stream under the action of the water pressure applied to the upstream side. During this slip settlement, the stress level in both materials, concrete and rock, remains allowable. It is true that the seismic load is able to increase such a slip displacement, nevertheless, since the structure is designed for horizontal hydrostatic loads, the stress level remains allowable even in such a seismic condition. The above mentioned issue was discussed during the 14th Benchmark Workshop on the Numerical Analysis of Dams organized by the International Commission on Large Dams (Stockholm, 6-9 September 2017). The theme B of the above mentioned Workshop was the static and seismic analysis of the Janneh dam. It is an arc-gravity dam, 157 meters high, now under construction in Lebanon, a high-seismicity region. The ten participants compared their results, obtained independently from each other and through different numerical models. In this paper the contribution of the authors is presented and the mechanical hypotheses at the base of the three-dimensional evolution of the crack path, at the dam-foundation joint, are discussed.
机译:在狭窄的山谷的情况下,特征在于强大的岩石质量,可以根据所谓的会聚方式设计挖掘。在这种情况下,当坝在施加到上游侧的水压的作用下朝向下游移动时,坝基接头处的压缩应力的平均值增加。在此滑动沉降期间,材料,混凝土和岩石中的应力水平仍然允许。确实,震动载荷能够增加这种滑移位移,因此,由于该结构设计用于水平静水压载荷,即使在这种地震状态下,应力水平也保持允许。在第14次基准研讨会期间讨论了上述问题,了解国际大坝国际委员会(2017年9月6日至9日斯德哥尔摩组织的水坝数值分析)。上述研讨会的主题B是Janneh Dam的静态和地震分析。它是一个弧形重力坝,高157米,现在正在黎巴嫩建设,高地震区。十个参与者比较了它们的结果,彼此独立地获得,通过不同的数值模型获得。在本文中,讨论了作者的贡献,并且探讨在坝上 - 基座接头处的裂纹路径的三维演化基部的机械假设。

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