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Geophysical imaging of alpine rock glaciers

机译:高山岩石冰川的地球物理成像

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Slope instabilities caused by the disappearance of ice within alpine rock glaciers are an issue of increasing concern. Design of suitable counter-measures requires detailed knowledge of the internal structures of rock glaciers, which can be obtained using geophysical methods. We examine benefits and limitations of diffusive electromagnetics, geoelectrics, seismics and ground-penetrating radar (georadar) for determining the depth and lateral variability of the active layer, the distributions of ice and water, the occurrence of shear horizons and the bedrock topography. In particular, we highlight new developments in data acquisition and data analysis that allow 2-D or even 3-D structures within rock glaciers to be imaged. After describing peculiarities associated with acquiring appropriate geophysical datasets across rock glaciers and emphasizing the importance of state-of-the-art tomographic inversion algorithms, we demonstrate the applicability of 2-D imaging techniques using two case studies of rock glaciers in the eastern Swiss Alps. We present joint interpretations of geoelectric, seismic and georadar data, appropriately constrained by information extracted from boreholes. A key conclusion of our study is that the different geophysical images are largely complementary, with each image resolving a different suite of subsurface features. Based on our results, we propose a general template for the cost-effective and reliable geophysical characterization of mountain permafrost.
机译:由高山冰川岩石中的冰消失引起的边坡不稳定性是一个日益引起人们关注的问题。设计适当的对策需要对冰川的内部结构有详细的了解,这可以使用地球物理方法获得。我们研究了扩散电磁学,地电学,地震学和探地雷达(georadar)的优点和局限性,以确定活动层的深度和横向变化,冰和水的分布,剪切层的出现以及基岩地形。特别是,我们着重介绍了数据采集和数据分析的新发展,这些发展使岩石冰川内的2D甚至3D结构成像。在描述了与在整个冰川中获取适当的地球物理数据集相关的特殊性并强调了最新的层析成像反演算法的重要性之后,我们使用瑞士东部阿尔卑斯山的两个冰川案例研究来证明二维成像技术的适用性。我们介绍了地电,地震和地雷达数据的联合解释,并适当地限制了从钻孔中提取的信息。我们研究的主要结论是,不同的地球物理图像在很大程度上是互补的,每个图像都解决了一套不同的地下特征。根据我们的结果,我们提出了一个具有成本效益和可靠的山区多年冻土地球物理特征的通用模板。

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