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Cracking Behavior of a Concrete Arch Dam with Weak Upper Abutment

机译:上部桥台较弱的混凝土拱坝的开裂行为

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摘要

The cracking behavior and failure mode of a 78 m high concrete double-curvature arch dam with weak upper abutment are investigated through performing cracking analysis. The mechanical behavior of concrete is simulated using a smeared crack model, in which a combination of the compression yield surface and the crack detection surface with a damaged elasticity concept is employed to describe the failure of concrete. The arch dam with practical mechanical properties of the upper and lower abutments is firstly studied with emphasis on its cracking behavior during overloading. Then, a comprehensive sensitivity analysis is carried out to investigate the influence of the ratio of the mechanical properties of upper abutment to those of lower abutment on dam failure with prime attention placed on the failure mode. Simulation results indicate the adopted smeared crack model is well-suited to the crack analysis of concrete arch dam. It is shown that cracking is localized around the interface between upper and lower abutments, which leads to a fast crack growth in the through-thickness direction of dam and finally causes the dam failure. Furthermore, the sensitivity analysis presents three types of failure modes corresponding to different ratio value, wherein Modes II and III should be avoided since the weak upper abutment plays a predominant role in the cracking and failure of concrete arch dam.
机译:通过进行开裂分析,研究了一座78 m高的高支墩弱双曲拱混凝土坝的开裂行为和破坏模式。使用涂污裂纹模型模拟混凝土的力学行为,其中压缩屈服面和具有损坏弹性概念的裂纹检测面的组合用于描述混凝土的破坏。首先研究具有上部和下部基台的实用机械性能的拱坝,重点是其在超载期间的开裂行为。然后,进行了全面的敏感性分析,研究了上基台与下基台的机械性能之比对大坝破坏的影响,并主要关注破坏模式。仿真结果表明所采用的涂抹裂缝模型非常适合混凝土拱坝的裂缝分析。结果表明,裂纹在上,下基台之间的界面附近发生,这导致沿大坝厚度方向的裂纹快速增长,最终导致大坝的破坏。此外,敏感性分析还提出了三种对应于不同比率值的破坏模式,其中应避免使用模式II和III,因为脆弱的上部基台在混凝土拱坝的开裂和破坏中起着主要作用。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第11期|6541975.1-6541975.13|共13页
  • 作者单位

    Hohai Univ, Coll Water Conservancy & Hydropower Engn, Nanjing 210098, Jiangsu, Peoples R China;

    Hohai Univ, Coll Water Conservancy & Hydropower Engn, Nanjing 210098, Jiangsu, Peoples R China;

    Chongqing Surveying & Design Inst Water Resources, Chongqing 400020, Peoples R China;

    Hohai Univ, Coll Water Conservancy & Hydropower Engn, Nanjing 210098, Jiangsu, Peoples R China;

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