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Statistical analyses of the effect of a drainage tunnel on landslide hydrogeological characteristics

机译:排水隧道对滑坡水文地质特征的统计分析

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A high groundwater level is highly relevant to the slope instability. Drainage tunnel is an effective method for groundwater level control, but its effect on landslide hydrogeological characteristics is rarely discussed. This study analysed the changes of the landslide hydrogeological characteristics under the effect of a drainage tunnel by real-time monitoring of rainfall, groundwater level, and surface displacement. The trend and mutation of groundwater level are analysed by the Mann-Kendall test and the Mann-Kendall mutation test. The memory effect of groundwater in the landslide area was analysed using autocorrelation analysis. The response characteristics of groundwater level to rainfall were evaluated using cross-correlation analysis and mutual information theory. Variations of groundwater levels were further investigated based on hydrograph analysis. Results showed that the groundwater level had a downward trend from 2016 to 2017. The significant downward trend of groundwater levels began in August 2016. The memory effect of groundwater levels was longer under the effect of the drainage tunnel. Before the construction of the drainage tunnel, the response time of groundwater to rainfall was less than 3 hr and rainfall can generate dramatic groundwater level variations. After the drainage tunnel was completed, time lags can be observed in the groundwater response, and the variation of groundwater levels was smaller than before. A strong correlation was found between groundwater levels and the landslide movement. This study demonstrated that the drainage tunnel had effectively controlled the groundwater level in the landslide and ensured the stability of the landslide.
机译:高地下水位与坡度不稳定高。排水隧道是地下水位控制的有效方法,但很少讨论其对滑坡水文地质特征的影响。本研究通过降雨,地下水位和表面位移的实时监测分析了排水隧道效果下滑坡水文地质特征的变化。地下水位的趋势和突变由Mann-Kendall测试和Mann-Kendall突变试验分析。使用自相关分析分析了地下水在滑坡区域的记忆效应。使用互相关分析和相互信息理论评估地下水位降雨的响应特性。基于水文分析进一步研究了地下水位的变化。结果表明,地下水位从2016年到2017年的下降趋势。地下水位的显着下行趋势于2016年8月开始。地下水位的记忆效应在排水隧道的影响下。在建造排水隧道之前,地下水降雨的响应时间小于3小时,降雨可以产生剧烈的地下水位变化。在完成排水隧道之后,可以在地下水响应中观察到时间滞后,地下水位水平的变化小于以前。地下水位和滑坡运动之间发现了强烈的相关性。本研究表明,排水隧道已有效地控制了滑坡中的地下水位,并确保了滑坡的稳定性。

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