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Evaluation of aDcps for suspended sediment transport monitoring, Fraser River, British Columbia

机译:不列颠哥伦比亚省弗雷泽河的aDcps用于悬浮泥沙输送监测的评估

摘要

Our ability to predict the timing and quantity of suspended sediment transport is limited because fine sand, silt and clay delivery are supply-limited, requiring empirical modelling approaches of limited temporal stability. Here, I evaluate a 300 kHz side-looking acoustic Doppler current profiler (aDcp), mounted in the Fraser River, BC, for continuous measurement of suspended sediment flux. I also evaluate a downward-looking 600 kHz aDcp at the same site. Both aDcps are calibrated against conventional bottle samples obtained with a USGS P63 sediment sampler. The results suggest that it is possible to estimate total suspended sediment flux using a 300 kHz side-looking aDcp in the Fraser River, but that it underestimates observed flux. The calibration of the 600 kHz aDcp is strong (R2=0.72), but it underestimates total sediment flux at low-moderate flows and overestimates flux at high flows.
机译:我们预测悬浮泥沙运移的时间和数量的能力是有限的,因为细砂,粉砂和粘土的输送是有限的,因此需要时间稳定性有限的经验建模方法。在这里,我评估了安装在不列颠哥伦比亚省弗雷泽河上的300 kHz侧视声学多普勒电流剖面仪(aDcp),用于连续测量悬浮的泥沙通量。我还在同一站点评估了一个向下看的600 kHz aDcp。两种aDcps均针对使用USGS P63沉积物采样器获得的常规瓶样品进行了校准。结果表明,在弗雷泽河中使用300 kHz侧视aDcp可以估算总悬浮泥沙通量,但它低估了观测到的通量。 600 kHz aDcp的标定很强(R2 = 0.72),但是它低估了低流量时的总泥沙通量,而高估了流量时的高通量。

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    Attard Maureen Elizabeth;

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  • 年度 2012
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