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Physical modelling of sliding failure of concrete gravity dam under overloading condition

机译:超载条件下混凝土重力坝滑动破坏的物理模拟

摘要

Sliding within the dam foundation is one of the key failure modes of a gravity dam. A twodimensional (2-D) physical model test has been conducted to study the sliding failure of a concrete gravity dam under overloading conditions. This model dam was instrumented with strain rosettes, linear variable displacement transformers (LVDTs), and embedded fiber Bragg grating (FBG) sensing bars. The surface and internal displacements of the dam structure and the strain distributions on the dam body were measured with high accuracy. The setup of the model with instrumentation is described and the monitoring data are presented and analyzed in this paper. The deformation process and failure mechanism of dam sliding within the rock foundation are investigated based on the test results. It is found that the horizontal displacements at the toe and heel indicate the dam stability condition. During overloading, the cracking zone in the foundation can be simplified as a triangle with gradually increased height and vertex angle.
机译:在坝基内滑动是重力坝的关键破坏模式之一。进行了二维(2-D)物理模型测试,以研究超载条件下混凝土重力坝的滑动破坏。该模型大坝装有应变花环,线性可变位移变压器(LVDT)和嵌入式光纤布拉格光栅(FBG)感应棒。对坝结构的表面和内部位移以及坝体上的应变分布进行了高精度测量。描述了带有仪器的模型的建立,并给出和分析了监测数据。根据试验结果,研究了坝体在岩石基础内滑动的变形过程和破坏机理。发现脚趾和脚跟处的水平位移指示了大坝的稳定状态。在超载期间,可以将基础中的裂缝区域简化为高度和顶点角逐渐增大的三角形。

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