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首页> 外文期刊>Geomorphology >Contemporary suspended sediment transfer and accumulation processes in the small proglacial Saetrevatnet sub-catchment, Bodalen, western Norway
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Contemporary suspended sediment transfer and accumulation processes in the small proglacial Saetrevatnet sub-catchment, Bodalen, western Norway

机译:挪威西部博达林小冰河Saetrevatnet小流域的当代悬浮泥沙转移和积累过程

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A combination of different process monitoring, lake sediment coring and sediment analysis methods and techniques was applied in the 17.5 km~2 Saetrevatnet sub-catchment in the upper Bodalen drainage basin (Nordfjord, western Norway) in order to define hydro-meteorological controls on runoff, suspended sediment transfer and sediment accumulation, and to determine the role of Lake Sastrevatnet within the drainage basin-wide sediment routing system. The proglacial system shows the typical seasonal and weather-depended runoff variations for glacierized drainage basins. Significant suspended sediment transport is associated to summer glacier melt (when 61.9% of the annual suspended sediment yield was recorded in 2010) as well as to single rainfall events (when 19.8% of the annual suspended sediment yield was recorded in 2010). The intensity of atmospheric energy input and the frequency of heavy rainfall events were found to be critical for the rate of suspended sediment transport within the Saetrevatnet sub-catchment. The computed annual suspended sediment yield from the proglacial area was 24.2 tkm~(-2), which is notably lower as compared with a number of other glacierized basins worldwide. Delta accumulations rates from 2009 (4cm yr~(-1)) and 2010 (3 cm yr~(-1)) as well as average annual delta advance ranging from 3.8 m to 4.6 m confirm the calculated high annual lake sedimentation rate of 1.4 cm yr~(-1). Lake Saetrevatnet (0.02 km~2) currently traps about 80-85% of the sediments delivered from the upstream-located glacial system highlighting the importance of small ephemeral proglacial lakes within larger valley-fjord sediment routing systems.
机译:在Bodalen上游流域(挪威西部的诺德峡湾)的17.5 km〜2 Saetrevatnet子汇水区应用了不同的过程监测,湖泊沉积物取心以及沉积物分析方法和技术的组合,以定义径流的水文气象控制,悬浮泥沙的转移和泥沙的积累,并确定Sastrevatnet湖在流域范围内的泥沙路由系统中的作用。冰川系统显示了冰川化流域的典型季节和取决于天气的径流变化。重大的悬浮泥沙输送与夏季冰川融化(2010年记录的年度悬浮泥沙产量为61.9%)以及一次降雨事件(2010年记录的年度悬浮泥沙产量为19.8%)有关。发现大气能量输入的强度和强降雨事件的频率对于Saetrevatnet子汇水区中悬浮泥沙的输送速率至关重要。计算出的来自冰原地区的年悬浮泥沙产量为24.2 tkm〜(-2),与世界上许多其他冰川化盆地相比明显较低。 2009年(4cm yr〜(-1))和2010年(3 cm yr〜(-1))的三角洲累积率以及3.8 m至4.6 m的年均三角洲超前量证实了计算出的1.4的高年湖沉积率cm yr〜(-1)。 Saetrevatnet湖(0.02 km〜2)当前捕获了上游冰川系统输送的约80-85%的沉积物,突显了较大的山谷峡湾沉积物路由系统中的短暂短暂冰河湖的重要性。

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