Relationship between river bank stability and hydrological processes using in situ measurement data

G. Mentes
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引用次数: 3

Abstract

Many river banks throughout the world are prone to landslides; therefore, serious efforts are made to develop landslide early warning systems. This study presents a method by which the stability changes of the river banks can be continuously monitored; necessary measures can be taken in time to reduce the damage. The method was tested in Dunaszekcső (Hungary), where the high loess bank of the River Danube has been intensively moving since 2007. The tilts of the high bank were measured by two borehole tiltmeters. The connection between tilt values and the river- and groundwater-level variations was investigated by multivariable and moving window regression analyses on the basis of a 6-year-long observation from 2011 to 2016. The results show that increasing regression coefficients mean decreasing stability of the high river bank, so the developed method can be used for continuous supervision of the high bank stability. The method is also suitable for studying the causes of motion processes. Investigations showed clearly that the effect of groundwater table variations is two orders of magnitude higher than the water-level variations of the River Danube. In addition to the erosion of the river, various small tilts of the stable and unstable parts also contribute to the arising of new cracks in the stable part, decreasing its width.
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利用现场测量数据研究河岸稳定性与水文过程的关系
世界各地的许多河岸都容易发生山体滑坡;因此,滑坡预警系统的开发是一项艰巨的任务。该研究提出了一种可以连续监测河岸稳定性变化的方法;可以及时采取必要的措施来减少损失。该方法在Dunaszekcsõ(匈牙利)进行了测试,自2007年以来,多瑙河的高黄土河岸一直在那里密集移动。高岸的倾斜度是用两个钻孔倾斜仪测量的。在2011年至2016年为期6年的观测基础上,通过多变量和移动窗口回归分析,研究了倾斜值与河流和地下水位变化之间的联系。结果表明,回归系数的增加意味着高河岸稳定性的降低,因此该方法可用于高河岸稳定性连续监测。该方法也适用于研究运动过程的原因。调查清楚地表明,地下水位变化的影响比多瑙河水位变化高出两个数量级。除了河流的侵蚀外,稳定和不稳定部分的各种小倾斜也导致稳定部分出现新的裂缝,使其宽度减小。
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
自引率
0.00%
发文量
8
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