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The thickness and internal structure of Fireweed rock glacier, Alaska, USA, as determined by geophysical methods

机译:通过地球物理方法确定的美国阿拉斯加杂草岩冰川的厚度和内部结构

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摘要

Geophysical investigations on rock glaciers are often difficult because rock glaciers are covered by an unconsolidated debris mantle a few meters thick, are typically <50 m thick and are composed of an ice-rock mixture of unknown composition. Transient electromagnetics (TEM) is a method that allows some of these difficulties to be minimized, and data collection is relatively efficient. TEM, with calibration from terminus exposure, was used to determine the thickness (similar to60 m) of Fireweed rock glacier, Alaska, U.S.A., under complex valley geometry. A conductive layer beneath the rock glacier was identified, and its distribution is consistent with a till-like layer. Seismic refraction, used to resolve the debris-mantle thickness (2-4 m), suggests the presence of a discontinuity at 18-28 m depth within the rock glacier. The discontinuity is also indicated in the radio-echo sounding and the TEM data, but to a lesser extent. This discontinuity is important because the motion of the rock glacier may occur across this as a "shear plane".
机译:对岩石冰川进行地球物理研究通常很困难,因为岩石冰川覆盖着几米厚的松散的碎屑地幔,通常厚度小于50 m,由未知组成的冰岩混合物组成。瞬变电磁(TEM)是一种可以最大程度减少这些困难的方法,并且数据收集相对有效。透射电子显微镜(TEM),根据终端暴露进行校准,用于确定复杂的山谷几何形状下美国阿拉斯加的Fireweed岩石冰川的厚度(约60 m)。确定了岩石冰川下方的一个导电层,其分布与一个类似耕till的层一致。用于解决碎片幔厚度(2-4 m)的地震折射表明,在岩石冰川中,深度为18-28 m处存在不连续性。在无线电回波测深和TEM数据中也显示了不连续性,但程度较小。这种不连续性很重要,因为岩石冰川的运动可能会以“剪切平面”的形式在其上发生。

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