首页> 外文期刊>Annals of Glaciology >Multi-year water and surface energy budget of a high-latitude polythermal glacier: evidence for overwinter water storage in a dynamic subglacial reservoir
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Multi-year water and surface energy budget of a high-latitude polythermal glacier: evidence for overwinter water storage in a dynamic subglacial reservoir

机译:高纬度多热冰川的多年水和地表能量收支:一个动态冰期储层中越冬储水的证据

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This paper examines the water budget and surface energy balance of a Svalbard glacier (midre Lovenbreen) over a 6year period (1997-2002). Fresh-water yields are found to lie between 1.1 and 1.5 m a~1 and reflect variable amounts of glacier ice ablation (0.27 + 0.15 m a~1) and more consistent amounts of snowmelt and summer precipitation (0.40 ±0.10 and 0.49 ±0.12 m respectively). Between 24% and 36% of the annual runoff is thought to pass through a subglacial drainage system. Although the site is heavily influenced by stable maritime air masses during the summer, surface melting is achieved largely by net shortwave radiation fluxes (74-100% of ablation). Water budget analysis shows that the annual runoff yields may be strongly influenced by water storage within the glacial system. Storage can occur over the winter period and force the early development of the subglacial drainage system during the following summer. Thus annual water fluxes from this glacier cannot be estimated from glacial mass-balance data alone and there is a need to assess the implications of overwinter storage for our understanding of glacial dynamics, annual fluvial process rates and mixing processes in Svalbard's fjords.
机译:本文研究了斯瓦尔巴德冰川(中部Lovenbreen)在6年期间(1997-2002年)的水预算和表面能平衡。发现淡水产量在1.1至1.5 ma〜1之间,反映了冰川消融量的变化(0.27 + 0.15 ma〜1)以及更一致的融雪量和夏季降水量(分别为0.40±0.10和0.49±0.12 m) )。据认为,每年径流的24%至36%通过冰川下的排水系统。尽管该位置在夏季受到稳定的海上空气质量的严重影响,但表面融化主要是通过净短波辐射通量(消融的74-100%)实现的。水资源预算分析表明,冰川系统内的储水量可能强烈影响年径流量。储藏可能发生在冬季,并迫使第二个夏季的冰期下排水系统提前发展。因此,仅凭冰川质量平衡数据无法估算出该冰川的年通水量,因此有必要评估越冬储量对我们对冰川动力学,年河流流速和斯瓦尔巴德峡湾混合过程的理解。

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