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Glaciohydraulic supercooling: the process and its significance

机译:冰川液压过冷:过程及其意义

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摘要

Glaciohydraulic supercooling is a process that allows water at the base of a glacier to remain liquid at a temperature below its freezing point in response to the geometry of water flow and subglacial pressure. Supercooling, and subsequent freezing, of subglacial water has implications for glacier dynamics, sediment transfer and landform evolution, and an understanding of the process is important both for understanding modern glacial environments and for reconstructing glacial environments of the past. However, recent research on glaciohydraulic supercooling has raised controversy both about the significance of the process and about the way in which it has been applied within the discipline. In this paper, we review recent work on supercooling in glaciers, assess its significance to glaciology, geomorphology and Quaternary science, and identify key issues requiring further research in order to resolve some of the controversy surrounding the topic. We suggest that, while glaciohydraulic supercooling is a very significant process, its adoption as an explanation of some phenomena has been premature, and that further research is required to test its true significance both in modern settings and in the glacial geologic record.
机译:冰川液压过冷是一种响应水流和冰下压力的几何形状,使冰川底部的水在低于冰点的温度下保持液态的过程。冰河下水的过冷和随后的冻结对冰川动力学,沉积物转移和地貌演化都有影响,对这一过程的理解对于理解现代冰川环境和重建过去的冰川环境都至关重要。但是,最近对冰川液压过冷的研究引起了争议,既涉及过程的重要性,也涉及其在该学科中的应用方式。在本文中,我们回顾了有关冰川过冷的最新工作,评估了其对冰川学,地貌学和第四纪科学的意义,并确定了需要进一步研究以解决围绕该主题的一些争议的关键问题。我们建议,尽管冰川液压过冷是一个非常重要的过程,但采用它作为某些现象的解释还为时过早,需要进一步研究以检验其在现代环境和冰川地质记录中的真实意义。

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