Long-Term Monitoring of Slope Movements with Time-Domain Reflectometry Technology in Landslide Areas, Taiwan

M. Su, I. Chen, Shei-Chen Ho, Yu-Shu Lin, Jun-Yang Chen
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Abstract

The study employs time-domain reflectometry (TDR) technology for landslide monitoring to explore rock deformation mechanism and to estimate locations of potential sliding surfaces in several landslide areas, Taiwan, over ten years. Comparing to laboratory and field testing, sliding surfaces in landslide areas occurred mainly at two types, namely shear and extension failure. The TDR technology is used for field monitoring to analyze locations of sliding surfaces and to quantify the magnitude of the sliding through laboratory shear and extension tests. There are several TDR-monitoring stations in six alpine landslide areas in the middle of Taiwan for long-term monitoring. A relation between TDR reflection coefficients and shear displacements was employed for a localized shear deformation in the field. Furthermore, the type of a cable rupture for the TDR monitoring in landslides can be determined as shear, extension, or compound failure through the field TDR waveforms. Overall, the TDR technology is practically used for a long-term monitoring system to detect the location and magnitude of slope movement in landslide areas.
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台湾滑坡区斜坡运动的时域反射技术长期监测
本研究利用时域反射法(TDR)技术进行滑坡监测,探讨台湾数个滑坡区的岩石变形机制及潜在滑面位置。与室内和现场试验结果相比,滑坡区滑动面主要发生剪切破坏和伸展破坏两种类型。TDR技术用于现场监测,分析滑动表面的位置,并通过实验室剪切和拉伸测试量化滑动的程度。在台湾中部6个高寒滑坡区设有多个tdr监测站,进行长期监测。利用TDR反射系数与剪切位移之间的关系计算了局部剪切变形。此外,通过现场TDR波形可以确定滑坡中用于TDR监测的电缆断裂类型为剪切、延伸或复合破坏。总体而言,TDR技术实际用于长期监测系统,以检测滑坡区边坡运动的位置和幅度。
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Introductory Chapter: Importance of Investigating Landslide Hazards Translational Rock-Block Slides in a Tertiary Flyschoid Complexes of Southern Piedmont Region (North-West Italy) The Translatory Wave Model for Landslides Long-Term Monitoring of Slope Movements with Time-Domain Reflectometry Technology in Landslide Areas, Taiwan Landslide Potential Evaluation Using Fragility Curve Model
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