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Water temperature in englacial and supraglacial channels: Change along the flow and contribution to ice melting on the channel wall

机译:冰川和冰川上渠道的水温:沿水流变化,对渠道壁上的冰融化有贡献

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The physics of water temperature change along a glacial water stream and its relation to ice melting rate on the channel walls are examined. The heat balance equation is based on the principles of energy conservation and an empirical relation of heat exchange between ice and flowing water. It is shown that the temperature of water exponentially approaches a nonzero value as flowing along a glacial channel. The channel meandering and noncircular cross-section were also taken into account. Typical values of the equilibrium water temperature are hundredths to a tenth of a degree depending on the channel size and slope, but the temperature can drastically increase when the channel has sediments. We compared our calculations to 1) a series of experiments with an artificial channel in ice and 2) data obtained from measurements at the Caucasus and Patagonia glaciers.
机译:研究了沿着冰川水流的水温变化的物理过程及其与通道壁上冰融化速率的关系。热平衡方程式基于节能原理和冰与流水之间的热交换经验关系。结果表明,沿着冰川通道流动时,水的温度呈指数方式接近非零值。还考虑了通道弯曲和非圆形横截面。平衡水温的典型值取决于通道的大小和坡度,为百分之一度至十分之一度,但是当通道中有沉积物时,温度会急剧升高。我们将计算结果与1)在冰上人工通道进行的一系列实验以及2)从高加索和巴塔哥尼亚冰川的测量获得的数据进行了比较。

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