首页> 外文期刊>Archeomatica >GLACIAL HYDROLOGICAL SYSTEM IN WANDA GLACIER ABLATION AREA, KING GEORGE ISLAND, ANTARCTICA, USING GROUND PENETRATING RADAR
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GLACIAL HYDROLOGICAL SYSTEM IN WANDA GLACIER ABLATION AREA, KING GEORGE ISLAND, ANTARCTICA, USING GROUND PENETRATING RADAR

机译:南极洲乔治王岛万达冰川消融区的冰川水文系统,使用地面穿透雷达

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This paper aims to determine the configuration of the drainage system and water storage in Wanda Glacier, located in King George Island (KGI), South Shetland Islands (61°54’ – 62°16’S and 57°35’ – 59°02’W), Antarctic Peninsula, using data obtained by 100 MHz GPR (Ground Penetration Radar) survey. This site is characterized by accelerated retraction and melting processes as consequence of a recent regional warming. Topography data were used to generate transversal and longitudinal sections and a three-dimensional model (DSM) of the glacier surface. The GPR system was able to deliver information about the internal structure and about the meltwater drainage configuration. GPR internal reflections are attributed to basal water films and intraglacial and subglacial water channels in the Wanda Glacier. The abundance of internal diffractions is considered an indicative of temperate ice with high liquid water content. Similar internal structures are observed in other glaciers in KGI. The application of GPR to Wanda Glacier study showed the dielectric contrasts, internal layering and englacial structure, glacier bed condition and the distribution of individual channels in the glacier and the englacial and subglacial routing of meltwater. Probably the configuration of a subglacial drainage and water liquid exerts an influence on the sediment evacuation by basal meltwater, subglacial erosion and the proglacial deposition pattern.
机译:本文旨在确定位于南设得兰群岛(61°54'– 62°16'S和57°35'– 59°02'W)位于乔治王国王岛(KGI)的万达冰川的排水系统和蓄水装置的配置。 ),使用100 MHz GPR(探地雷达)勘测获得的数据。由于最近的区域变暖,该站点的特点是加速了回缩和融化过程。地形数据用于生成冰川表面的横向和纵向截面以及三维模型(DSM)。 GPR系统能够提供有关内部结构和融水排放配置的信息。 GPR内部反射归因于万达冰川的基底水膜以及冰川内和冰川下水通道。内部衍射的丰度被认为是液态水含量高的温带冰的指示。凯基群岛的其他冰川也观察到类似的内部结构。 GPR在万达冰川研究中的应用显示了介电对比,内部分层和冰川结构,冰川床条件以及冰川中单个通道的分布以及融水的冰川和冰川下路线。冰川下排水和水液的构造可能会对基础熔体水的沉积物疏散,冰川下侵蚀和冰川沉积模式产生影响。

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