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首页> 外文期刊>Journal of Water Resource and Protection >The Intra-Annual Variability of Discharge, Sediment Load and Chemical Flux from the Monitoring: The Yukon River, Alaska
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The Intra-Annual Variability of Discharge, Sediment Load and Chemical Flux from the Monitoring: The Yukon River, Alaska

机译:监测的流量,泥沙负荷和化学通量的年内变化:阿拉斯加育空河

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摘要

The covered-ice breakup in subarctic to arctic rivers in the early snowmelt season often gives any damage to instruments monitoring physical and chemical factors of water. The serious condition has brought few time series data during the snowmelt runoff except the river stage or discharge. In this study, the contribution of snowmelt runoff to the discharge and sediment load is quantified by monitoring water turbidity and temperature at the lowest gauging station of U. S. Geological Survey in the Yukon River, Alaska, for more than 3 years (June 2006 to September 2009). The turbidity was recorded by a self-recording turbidimeter with a sensor of infrared-ray back-scattering type, of which the window is cleaned by a wiper just before a measurement. The turbidity time series, coupled with frequent river water sampling at mid-channel, produce time series of suspended sediment (SS) concentration, particulate organic carbon (POC) concentration and particulate organic nitrogen (PON) concentration (mg?L–1) by using the high correlation (R2 = 0.747 to 0.790; P 11 to 2.01 × 1011 m3), 8.7% - 22.5% of the annual sediment load (3.94 × 107 to 5.08 × 107 ton), 11.6% - 23.7% of the annual POC flux (4.05 × 105 to 4.77 × 105 ton), and 10.3% - 24.5% of the annual PON flux (2.80 × 104 to 3.44 × 104 ton). In the snowmelt season, the peak suspended sediment concentration preceded the peak discharge by a few days. This probably results from the fluvial sediment erosion in the river channels.
机译:在融雪初期,北极地区到北极河流的覆冰破裂经常对监测水的物理和化学因素的仪器造成任何损害。除河段或流量外,严酷的条件几乎没有带来融雪径流期间的时间序列数据。在这项研究中,通过监测阿拉斯加育空河美国地质调查局最低计量站超过3年(2006年6月至2009年9月)的水浊度和温度,量化了融雪径流对排水量和泥沙量的贡献。 )。浊度通过带有红外线反向散射型传感器的自记录浊度计记录,在测量之前,用刮水器清洁其窗口。浊度时间序列,加上在河道中部频繁的河水采样,产生了悬浮泥沙(SS)浓度,颗粒有机碳(POC)浓度和颗粒有机氮(PON)浓度(mg?L–1)的时间序列。使用高相关性(R2 = 0.747至0.790; P 11至2.01×1011 m3),占年沉积物负荷的8.7 %-22.5 %(3.94×107至5.08×107吨),11.6 %-23.7 % POC年通量(4.05×105至4.77×105吨)的一半,以及PON年通量(2.80×104至3.44×104吨)的10.3%-24.5%。在融雪季节,峰值悬浮泥沙浓度比峰值流量高出几天。这可能是由于河道中的河流沉积物侵蚀造成的。

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