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Microseismic Monitoring and 3D Finite Element Analysis of the Right Bank Slope, Dagangshan Hydropower Station, during Reservoir Impounding

机译:储层蓄水期间右岸坡度右岸坡度微震监测和3D有限元分析

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The right bank slope of Dagangshan hydropower station in China has complex geological conditions and is subjected to high in situ stress. Notably, microseismic activities in the right bank slope occurred during reservoir impounding. This paper describes the microseismic monitoring technology, and three-dimensional (3D) finite element analysis is used to explore the microseismic activities and damage mechanisms in the right bank slope during reservoir impounding. Based on data obtained from microseismic monitoring, a progressive microseismic damage model is proposed and implemented for 3D finite element analysis. The safety factor for the right bank slope after reservoir impoundment obtained from the 3D finite element analysis, which included the effects of progressive microseismic damage, was 1.10, indicating that the slope is stable. The microseismic monitoring system is able to capture the slope disturbance during reservoir impounding in real time and is a powerful tool for qualitatively assessing changes in slope stability over time. The proposed progressive microseismic damage model adequately simulates the changes in the slope during the impoundment process and provides a valuable tool for evaluating slope stability.
机译:中国的右岸坡在中国的地质条件下具有复杂的地质条件,并受到高于原位应力的高度。值得注意的是,在储存器扣押期间发生右岸斜坡的微震活动。本文介绍了微震监测技术,三维(3D)有限元分析用于探讨储层蓄水期间右岸斜率的微震活动和损坏机制。基于从微震监测获得的数据,提出了一种渐进的微震损伤模型,用于3D有限元分析。从3D有限元分析中获得的储层蓄水后右岸斜率的安全系数,包括渐进微震损伤的效果为1.10,表明斜坡稳定。微震监测系统能够实时储存过程中捕获坡度扰动,并且是一个强大的工具,用于随着时间的推移评估坡度稳定性变化的强大工具。所提出的渐进微震损伤模型充分模拟蓄水过程中斜率的变化,并提供了评估斜坡稳定性的有价值的工具。

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