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Discharge-sediment processes of the Zhadang glacier on the Tibetan Plateau measured with a high frequency data acquisition system

机译:高频数据采集系统测量青藏高原扎当冰川的沉积-沉积过程

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摘要

In high elevation cold regions of the Tibetan Plateau, suspended sediment transfer from glacier meltwater erosion is one of the important hydrological components. The Zhadang glacier is a typical valley-type glacier in the Nyainqentanglha Mountains on the Tibetan Plateau. To make frequent and long period records of meltwater runoff and sediment processes in the very high elevation and isolated regions, an automatic system was installed near the glacier snout (5400 m a.s.l) in August 2013, to measure the transient discharge and sediment processes at 5-min interval, which is shorter than the time span for the water flow to traverse the catchment from the farthest end to the watershed outlet. Diurnal variations of discharge, and suspended sediment concentration (SSC) were recorded at high frequency for the Zhadang glacier, before suspended sediment load (SSL) was computed. Hourly SSC varied from the range of 0.2 kg/m3 to 0.5 kg/m3 (at 8:00–9:00) to the range of 2.0 kg/m3 to 4.0 kg/m3 (at 17:00–18:00). The daily SSL was 32.24 t during the intense ablation period. Hourly SSC was linearly correlated with discharge (r = 0.885**, n = 18, p < 0.01). A digit-eight hysteresis loop was observed for the sediment transport in the glacier area. Air temperature fluctuations influence discharge, and then result in the sediment variations. The results of this study provide insight into the responses of suspended sediment delivery processes with a high frequency data in the high elevation cold regions. Copyright © 2016 John Wiley & Sons, Ltd.
机译:在青藏高原的高寒地区,冰川融水侵蚀引起的悬浮泥沙转移是重要的水文要素之一。扎当冰川是青藏高原念青唐古拉山脉的典型山谷型冰川。为了经常记录高海拔和偏远地区的融水径流和泥沙过程,2013年8月在冰川口(5400 m asl)附近安装了一个自动系统,以测量5点的瞬态排放和泥沙过程。 -min间隔,该间隔短于水流从集水区的最远端到达集水区出口的时间跨度。在计算悬浮泥沙负荷(SSL)之前,对扎当冰川的流量和悬浮泥沙浓度(SSC)的昼夜变化进行了高频记录。每小时SSC的范围从0.2µkg / m3到0.5µkg / m3(在8:00–9:00)到2.0µkg / m3到4.0µkg / m3(在17:00-18:00)。在强烈消融期间,每日SSL为32.24 t。每小时SSC与放电呈线性关系(r = 0.885 **,n = 18,p <0.01)。在冰川区域观察到了八位数的滞后回线。气温波动会影响排放,进而导致沉积物变化。这项研究的结果为高海拔寒冷地区的高频数据提供了对悬浮泥沙输送过程响应的洞察。版权所有©2016 John Wiley&Sons,Ltd.

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  • 来源
    《Hydrological ProcHydrological Processesrnesses》 |2016年第23期|4330-4338|共9页
  • 作者单位

    China Agricultural University College of Water Resources and Civil Engineering Beijing China;

    Institute of Geographical Sciences and Natural Resources Research Chinese Academy of Sciences Key Laboratory of Water Cycle and Related Land Surface Processes Beijing China;

    Institute of Geographical Sciences and Natural Resources Research Chinese Academy of Sciences Key Laboratory of Water Cycle and Related Land Surface Processes Beijing China;

    Institute of Geographical Sciences and Natural Resources Research Chinese Academy of Sciences Key Laboratory of Water Cycle and Related Land Surface Processes Beijing China;

    China Agricultural University College of Water Resources and Civil Engineering Beijing China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    glacier meltwater; suspended sediment; discharge; high frequency; meteorological factors;

    机译:冰川融水悬浮泥沙流量高频气象因素;

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