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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Airborne geophysical mapping as an innovative methodology for landslide investigation: evaluation of results from the Gschliefgraben landslide, Austria
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Airborne geophysical mapping as an innovative methodology for landslide investigation: evaluation of results from the Gschliefgraben landslide, Austria

机译:空中地球物理映射作为滑坡调查的创新方法:评估Gschliefgraben Landslide,奥地利的结果

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In September 2009, a complex airborne geophysical survey was performed in the large landslide affected area of the Gschliefgraben valley, Upper Austria, in order to evaluate the applicability of this method for landslide detection and mapping. An evaluation of the results, including different remote-sensing and ground-based methods, proved that airborne geophysics, especially the airborne electromagnetic method, has a high potential for landslide investigation. This is due to its sensitivity to fluid and clay content and porosity, which are parameters showing characteristic values in landslide prone structures. Resistivity distributions in different depth levels as well as depth slices along selected profiles are presented and compared with ground geoelectrical profiles for the test area of Gschliefgraben. Further interesting results can be derived from the radiometric survey, whereas the naturally occurring radioisotopes 40K and 232Th, as well as the man-made nuclide 137Cs have been considered. While the content of potassium and thorium in the shallow subsurface layer is expressively related to the lithological composition, the distribution of caesium is mainly determined by mass wasting processes.
机译:2009年9月,在奥地利州Gschliefgraben山谷的大型滑坡受影响地区进行了复杂的空中地球物理调查,以评估这种方法对滑坡检测和映射的适用性。对结果的评估,包括不同的遥感和基于基于地面的方法,证明了机载地球物理,特别是空中电磁方法,具有很高的滑坡调查潜力。这是由于其对流体和粘土含量和孔隙率的敏感性,这是显示滑坡易受结构中的特征值的参数。呈现不同深度水平的电阻率分布以及沿着所选轮廓的深度切片,与Gschliefgraben的测试区域的地电影程相比。进一步有趣的结果可以源自辐射测量,而自然发生的放射性同位素40K和232以及已经考虑了人造的核素137Cs。虽然浅层地下层中钾和钍的含量与岩性组成有表现相关,但铯的分布主要由质量浪费方法决定。

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