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Comparing geophysical methods for talus slope investigations in the Turtmann valley (Swiss Alps)

机译:图尔特曼山谷(瑞士阿尔卑斯山)距骨坡度调查的地球物理方法比较

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摘要

Three geophysical methods, ground penetrating radar, 2D-resistivity and seismic refraction were applied to two landform complexes in a high-alpine valley in Switzerland to investigate their internal structure. Results of the different methods were analysed separately, before conclusions about sediment thickness and geomorphologic implications were drawn. The results from the three methods were compared to focus on the quality of the methods and their field utility, with respect to portability of equipment, required man-power and measurement time. In this study, ground penetrating radar and seismic refraction proved to be the most suitable with respect to the quality and resolution of the subsurface information and the level of field utility. Sediment thicknesses of 15 m on a rectilinear slope and more than 30 m on a talus cone have been measured; a backweathering rate of approximately 700 mm ka~(-1) was established. Furthermore, the radar delivered detailed internal sediment structure as well as interfaces between talus and rock glacier. The combined geophysical investigation produced a detailed image of the subsurface composition of the two landform complexes that enhance the understanding of the paraglacial landform evolution in this hanging valley.
机译:将三种地球物理方法,探地雷达,二维电阻率和地震折射方法应用于瑞士高高山山谷中的两个地形复合体,以研究其内部结构。在得出有关沉积物厚度和地貌含义的结论之前,分别分析了不同方法的结果。比较了这三种方法的结果,重点关注方法的质量及其现场实用性,以及设备的便携性,所需的人力和测量时间。在这项研究中,就地下信息的质量和分辨率以及现场使用水平而言,探地雷达和地震折射被证明是最合适的。测得的直线坡度上的沉积物厚度为15 m,而距骨锥上的沉积物厚度已超过30 m。建立了大约700 mm ka〜(-1)的逆风化速率。此外,雷达还提供了详细的内部沉积物结构以及距骨与岩石冰川之间的界面。联合的地球物理调查产生了两个地形复合体的地下成分的详细图像,这些图像增强了对该悬空山谷冰下地形演化的认识。

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