首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Stability analyses of dam abutments by 3D elasto-plastic finite-element method: a case study of Houhe gravity-arch dam in China
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Stability analyses of dam abutments by 3D elasto-plastic finite-element method: a case study of Houhe gravity-arch dam in China

机译:用3D弹塑性有限元法分析坝基的稳定性-以中国后河重力拱坝为例。

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This paper studies the stabilities of the abutments of Houhe gravity-arch dam using elasto-plastic finite element analyses and block theory. The gravity-arch dam is constructed by expanding the existing gravity dam. Due to the complex geologic conditions, the natural abutments do not meet the stability requirements. Engineering measures including concrete plugs and concrete backfills are thus designed to increase the safety of both abutments. The effectiveness of these measures is evaluated in this study. The paper performs three-dimensional elasto-plastic finite element analyses to obtain the stress and deformation characteristics of the abutments and the dam. The stabilities of sliding blocks on the abutments are then evaluated by incorporating the results of finite-element method analyses. It is found that the use of concrete plugs significantly increases the factors of safety against sliding for both abutments. Concrete backfills not only provide the sliding resistance, but also are effective in reducing the deformation of the abutments and improve the stress conditions along the base of the dam. The dam works under satisfactory conditions as the results of applying these engineering measures.
机译:本文运用弹塑性有限元分析和分块理论,对后河重力拱坝坝肩的稳定性进行了研究。重力拱坝是通过扩展现有重力坝而建造的。由于复杂的地质条件,天然桥台无法满足稳定性要求。因此,设计了包括混凝土塞和混凝土回填在内的工程措施,以提高两个基台的安全性。在这项研究中评估了这些措施的有效性。本文进行了三维弹塑性有限元分析,以获得基台和坝体的应力和变形特性。然后,通过结合有限元方法分析的结果来评估基台上滑块的稳定性。已经发现,使用混凝土塞明显增加了两个基台的抗滑动安全性。混凝土回填不仅提供了滑动阻力,而且还有效地减少了桥台的变形并改善了沿坝基的应力条件。由于采取了这些工程措施,大坝在令人满意的条件下工作。

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