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Subglacial drainage processes at a High Arctic polythermal valley glacier

机译:高北极多热谷冰川的冰下排水过程

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Dye-tracer experiments undertaken over two summer melt seasons at polythermal John Evans Glacier, Ellesmere Island, Canada, were designed to investigate the character of the subglacial drainage system and its evolution over a melt season. In both summers, dye injections were conducted at several moulins and traced to a single subglacial outflow. Tracer breakthrough curves suggest that supraglacial meltwater initially encounters a distributed subglacial drainage system in late June. The subsequent development and maintenance of a channelled subglacial network are dependent upon sustained high rates of surface melting maintaining high supraglacial inputs. In a consistently warm summer (2000), subglacial drainage became rapidly and persistently channelled. In a cooler summer (2001), distributed subglacial drainage predominated. These observations confirm that supraglacial meltwater can access the bed of a High Arctic glacier in summer, and induce significant structural evolution of the subglacial drainage system. They do not support the view that subglacial drainage systems beneath polythermal glaciers are always poorly developed. They do suggest that the effects on ice flow of surface water penetration to the bed of predominantly cold glaciers may be short-lived.
机译:在加拿大Ellesmere岛的多热John Evans Glacier的两个夏季融化季节进行的染料示踪剂实验旨在研究冰川下排水系统的特征及其在融化季节的演变。在两个夏天,都在几个红磨坊进行了染料注入,并追踪到单个冰川下流出。示踪剂的突破曲线表明,冰川上融水最初在6月下旬遇到了分散的冰川下排水系统。沟状冰河下网络的后续发展和维持取决于持续高的表面融化速率,维持较高的冰川上输入。在一个持续温暖的夏天(2000年),冰川下排水迅速而持续地被引导。在一个凉爽的夏天(2001年),分散的冰川下排水占主导地位。这些观察结果证实,冰川上融水可以在夏季进入北极高冰川的河床,并引起冰川下排水系统的重大结构演化。他们并不支持这样的观点,即多热冰川下的冰川下排水系统总是发展不佳。他们确实暗示,地表水渗透到主要为冷冰川的河床对冰流的影响可能是短暂的。

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