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Drainage-system development in consecutive melt seasons at a polythermal Arctic glacier evaluated by flow-recession analysis and linear-reservoir simulation

机译:连续流动融化季节在多热北极冰川上的排水系统发育通过流动-后退分析和线性储层模拟进行评估

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摘要

[1] The drainage systems of polythermal glaciers play an important role in high-latitude hydrology, and are determinants of ice flow rate. Flow-recession analysis and linear-reservoir simulation of runoff time series are here used to evaluate seasonal and inter-annual variability in the drainage system of the polythermal Finsterwalderbreen, Svalbard, in 1999 and 2000. Linear-flow recessions are pervasive, with mean coefficients of a fast reservoir varying from 16 (1999) to 41 h (2000), and mean coefficients of an intermittent, slow reservoir varying from 54 (1999) to 114 h (2000). Drainage-system efficiency is greater overall in the first of the two seasons, the simplest explanation of which is more rapid depletion of the snow cover. Reservoir coefficients generally decline during each season (at 0.22 h d−1 in 1999 and 0.52 h d−1 in 2000), denoting an increase in drainage efficiency. However, coefficients do not exhibit a consistent relationship with discharge. Finsterwalderbreen therefore appears to behave as an intermediate case between temperate glaciers and other polythermal glaciers with smaller proportions of temperate ice. Linear-reservoir runoff simulations exhibit limited sensitivity to a relatively wide range of reservoir coefficients, although the use of fixed coefficients in a spatially lumped model can generate significant subseasonal error. At Finsterwalderbreen, an ice-marginal channel with the characteristics of a fast reservoir, and a subglacial upwelling with the characteristics of a slow reservoir, both route meltwater to the terminus. This suggests that drainage-system components of significantly contrasting efficiencies can coexist spatially and temporally at polythermal glaciers.
机译:[1]多元冰川的排水系统在高纬度水文学中起着重要作用,并且是冰流量的决定因素。本文使用径流时间序列的流量衰退分析和线性储层模拟来评估斯瓦尔巴特群岛Finsterwalderbreen多热1999年和2000年的排水系统的季节和年际变化。线性流量衰退普遍存在,具有均值系数快速储层的变化范围从16(1999)到41 h(2000),间歇性慢储层的平均系数从54(1999)到114 h(2000)变化。在两个季节的第一个季节中,排水系统的整体效率更高,最简单的解释是积雪的迅速耗尽。通常每个季节的储层系数都会下降(1999年为0.22 h d -1 和2000年为0.52 h d -1 ),表明排水效率有所提高。但是,系数与放电之间没有显示出一致的关系。因此,Finsterwalderbreen似乎是温带冰川与其他比例较小的温带冰的多热冰川之间的中间案例。尽管在空间集总模型中使用固定系数会产生明显的亚季节误差,但线性储层径流模拟对有限范围的储层系数的敏感性有限。在Finsterwalderbreen,一条具有快速储层特征的冰缘河道和具有缓慢储层特征的冰川下上升流都将融水输送到终点。这表明,效率明显不同的排水系统组件可以在空间上和时间上在多热冰川上共存。

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