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Integrated Analysis of the Formation Mechanism of Cracks in a Concrete Dam Using Microseismic Monitoring and Numerical Simulation

机译:基于大震监测和数值模拟的混凝土坝裂缝形成机理综合分析

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The dam of Guanyinyan hydropower station is composed of a concrete gravity dam in the left bank and a rockfill dam in the right bank. During the operation of the hydropower station, several surface cracks occurred in the concrete gravity dam, which threatened the stability of the dam. To evaluate the evolution trend of the cracks and forecast the potential risk of the dam, the microseismic (MS) monitoring technique and finite-element method were used. First, the concrete three-point bending field test was performed to prove the reliability of the MS technique in monitoring the concrete cracks. The MS monitoring results were consistent with the simulation results. Then, the MS monitoring system was installed in the dam body. By analysing the MS activities before and after the impoundment, the evolution trend of the cracks and potential risk of the dam were evaluated and forecasted. The simulation results were also consistent with the monitoring results. These results can provide significant references for the operation safety of the dam and also present a new thought for the risk evaluation of similar dam engineering.
机译:观音岩水电站大坝由左岸的混凝土重力坝和右岸的堆石坝组成。在水电站运行期间,混凝土重力坝发生了数个表面裂缝,这威胁了水坝的稳定性。为了评估裂缝的发展趋势并预测大坝的潜在风险,使用了微震(MS)监测技术和有限元方法。首先,进行了混凝土三点弯曲场试验,以证明MS技术在监测混凝土裂缝方面的可靠性。质谱监测结果与模拟结果一致。然后,将MS监控系统安装在坝体中。通过分析蓄水前后的MS活动,对裂缝的演变趋势和大坝的潜在风险进行了评估和预测。仿真结果也与监测结果一致。这些结果可为大坝的运行安全提供重要参考,也为类似大坝工程的风险评估提供了新思路。

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