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Investigations of the form and flow of ice sheets and glaciers using radio-echo sounding

机译:利用无线电回声探测冰盖和冰川的形式和流动

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摘要

Radio-echo sounding (RES), utilizing a variety of radio frequencies, was developed to allow glaciologists to measure the thickness of ice sheets and glaciers. We review the nature of electromagnetic wave propagation in ice and snow, including the permittivity of ice, signal attenuation and volume scattering, along with reflection from rough and specular surfaces. The variety of instruments used in RES of polar ice sheets and temperate glaciers is discussed. The applications and insights that a knowledge of ice thickness, and the wider nature of the form and flow of ice sheets, provides are also considered. The thickest ice measured is 4.7 km in East Antarctica. The morphology of the Antarctic and Greenland ice sheets, and many of the smaller ice caps and glaciers of the polar regions, has been investigated using RES. These findings are being used in three-dimensional numerical models of the response of the cryosphere to environmental change. In addition, the distribution and character of internal and basal reflectors within ice sheets contains information on, for example, ice-sheet layering and its chrono-stratigraphic significance, and has enabled the discovery and investigation of large lakes beneath the Antarctic Ice Sheet. Today, RES from ground-based and airborne platforms remains the most effective tool for measuring ice thickness and internal character.
机译:利用各种无线电频率的无线电回声测深仪(RES)被开发出来,以使冰川学家能够测量冰盖和冰川的厚度。我们回顾了电磁波在冰和雪中传播的性质,包括冰的介电常数,信号衰减和体积散射以及粗糙和镜面反射。讨论了极地冰盖和温带冰川的RES中使用的各种仪器。还应考虑到有关冰厚度的知识以及冰盖的形式和流动的广泛性质的应用和见解。在南极洲东部,测得的最厚冰层为4.7公里。已经使用RES研究了南极和格陵兰冰盖的形态,以及极地地区的许多较小的冰盖和冰川。这些发现被用于冰冻圈对环境变化响应的三维数值模型中。此外,冰盖内的内部反射器和基底反射器的分布和特征还包含有关例如冰盖分层及其年代地层意义的信息,并使得能够发现和研究南极冰盖下方的大型湖泊。如今,地面和空中平台的RES仍然是测量冰厚和内部特征的最有效工具。

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