Geothermal Heat Shapes the Antarctic Ice Sheet From Below

Tobias Stål, Felicity S. McCormack, A. Reading, Niam Askey-Doran, J. Halpin, M. Lösing
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Abstract

Antarctica’s ice sheet is constantly on the move, flowing from the deep, frozen interior of the continent toward the ocean, where it melts. In fact, because the oceans are getting warmer, the Antarctic ice sheet melts faster, and therefore, the sea level is rising. However, predicting how the ice sheet will flow differently from place to place is complicated. The landscape beneath the ice sheet helps to control how fast the ice moves. For example, the ice can stick and deform, or slide smoothly across the land under the ice. Naturally occurring heat from inside the Earth can cause the base of the ice sheet to melt and soften so that it flows more easily, sliding on the meltwater formed. The amount of this geothermal heat varies across Antarctica and is difficult to measure. However, scientists with various expertise can collaborate to understand how much heat there is and how it shapes the ice sheet.
地热从下往上塑造南极冰盖
南极洲的冰层不断移动,从冰封的大陆内部深处流向海洋,在那里融化。事实上,由于海洋变暖,南极冰盖融化得更快,因此海平面也在上升。然而,预测冰原在不同地方的流动方式是非常复杂的。冰原下的地形有助于控制冰的移动速度。例如,冰层可以粘连变形,也可以在冰下的陆地上平稳滑动。地球内部自然产生的热量可以使冰层底部融化和软化,从而使冰层更容易流动,在融水形成的冰层上滑动。南极洲各地的地热量各不相同,很难测量。不过,拥有各种专业知识的科学家可以通过合作来了解热量的多少以及它是如何塑造冰原的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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