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Snow hydrology of a headwater Arctic basin: 1. Physical measurements and process studies

机译:北极源头盆地的雪水文: 1.物理测量和过程研究

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The hydrologic cycle of an arctic watershed is dominated by such physical elements as snow, ice, permafrost, seasonally frozen soils, wide fluctuations in surface energy balance, and phase change of snow and ice to water. Hydrologic data collected over a 5‐year period (1985–1989) from an arctic watershed in northern Alaska are presented. Processes related to snow accumulation, redistribution, ablation, evaporation and subsequent snowmelt‐generated runoff are discussed. The total water content of the snowpack at the end of winter has comprised between 28 and 40 of the annual precipitation. Redistribution of snow on the ground by the wind is a major factor in increasing the snowmelt runoff. Much of the redistributed snow accumulates in the valley bottom along the stream and also along depressions on the hillslopes. These depressions are small surface drainage channels that are referred to as water tracks. Partitioning of the snowmelt into runoff, evaporation and increased soil water storage in the active layer was carried out on the plot and watershed scale. Over a 5‐year period, the volume of snowmelt runoff varied from 50 to 66 of the average watershed snowpack, while evaporation varied from 20 to 34 and soil moisture storage increased between 10 and 19. Much greater variation in these hydrologic components occurred at the plo
机译:北极流域的水文循环主要由雪、冰、永久冻土、季节性冻土、地表能量平衡的大幅波动以及冰雪到水的相变等物理要素主导。介绍了从阿拉斯加北部北极流域收集的 5 年(1985-1989 年)的水文数据。讨论了与积雪、再分布、消融、蒸发和随后的融雪产生的径流相关的过程。冬季结束时积雪的总含水量占年降水量的28%至40%。风对地面上积雪的重新分配是增加融雪径流的主要因素。大部分重新分布的积雪堆积在溪流沿线的谷底以及山坡上的洼地。这些洼地是小型的地表排水通道,被称为水道。在样地和流域尺度上,将融雪划分为径流、蒸发量和增加活性层土壤储水量。在5年的时间里,融雪径流量从平均流域积雪的50%到66%不等,而蒸发量从20%到34%不等,土壤水分储存量增加了10%到19%。这些水文成分的变化要大得多,发生在巴解组织

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