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Monitoring landslides with geophysical and geodetic observations

机译:利用地球物理和大地观测资料监测滑坡

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The objective of this study was to evaluate and predict land movement by integrating geodetic, geophysical and meteorological data in a landslide area. Specifically, electrical resistivity tomography surveying, Global Navigation Satellite System and terrestrial laser scanning techniques were integrated to monitor a landslide. The study area lies to the southeast of the town of Ta kent in southern Turkey, close to Balcflar in the Central Taurus mountain chain. Landslides result in considerable damage to structures, farmland and the environment in this area; therefore, it is important to characterise the size, extent and timing of past land movements in order to mitigate damage from future landslides. Analysis presented in this paper shows that the greatest land movements in the region occur in spring, when average motions can be up to 1.5 m per month. It is demonstrated that integrated techniques provide a better means for monitoring landslide processes and gathering data for predictions of future movements. Mapping landslide movements by integrating geophysical and geodetic observations can provide a meaningful evaluation of a landslide and its dynamics.
机译:这项研究的目的是通过整合滑坡地区的大地,地球物理和气象数据来评估和预测土地运动。具体来说,电阻率层析成像测量,全球导航卫星系统和地面激光扫描技术已集成在一起,以监测滑坡。研究区域位于土耳其南部Ta kent镇的东南部,靠近Taurus中部山脉的Balcflar。滑坡对这一地区的建筑物,农田和环境造成了严重破坏;因此,表征过去土地运动的规模,范围和时间很重要,以减轻未来滑坡的破坏。本文介绍的分析表明,该地区最大的陆地运动发生在春季,此时平均运动可能达到每月1.5 m。事实证明,综合技术为监测滑坡过程和收集数据以预测未来运动提供了更好的手段。通过整合地球物理和大地观测资料来绘制滑坡运动图,可以对滑坡及其动力学提供有意义的评估。

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