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Comparison of fluvial suspended-sediment concentrations and particle-size distributions measured with in-stream laser diffraction and in physical samples

机译:用流内激光衍射和物理样品测量的河流悬浮沉积物浓度和粒径分布的比较

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摘要

Laser-diffraction technology, recently adapted for in-stream measurement of fluvial suspended-sediment concentrations (SSCs) and particle-size distributions (PSDs), was tested with a streamlined (SL), isokinetic version of the Laser In Situ Scattering and Transmissometry (LISST) for measuring volumetric SSCs and PSDs ranging from 1.8 to 415 m in 32 log-spaced size classes. Measured SSCs and PSDs from the LISST-SL were compared to a suite of 22 data sets (262 samples in all) of concurrent suspended-sediment and streamflow measurements using a physical sampler and acoustic Doppler current profiler collected during 2010-2012 at 16 U.S. Geological Survey streamflow-gaging stations in Illinois and Washington (basin areas: 38-69,264 km(2)). An unrealistically low computed effective density (mass SSC/volumetric SSC) of 1.24 g/mL (95% confidence interval: 1.05-1.45 g/mL) provided the best-fit value (R-2=0.95; RMSE=143 mg/L) for converting volumetric SSC to mass SSC for over two orders of magnitude of SSC (12-2,170 mg/L; covering a substantial range of SSC that can be measured by the LISST-SL) despite being substantially lower than the sediment particle density of 2.67 g/mL (range: 2.56-2.87 g/mL, 23 samples). The PSDs measured by the LISST-SL were in good agreement with those derived from physical samples over the LISST-SL's measureable size range. Technical and operational limitations of the LISST-SL are provided to facilitate the collection of more accurate data in the future. Additionally, the spatial and temporal variability of SSC and PSD measured by the LISST-SL is briefly described to motivate its potential for advancing our understanding of suspended-sediment transport by rivers.
机译:激光衍射技术最近适用于河流中悬浮物浓度(SSCs)和粒度分布(PSDs)的流内测量,并通过流线(SL)等速版本的激光原位散射和透射法( LISST),用于测量32个对数间距尺寸类别中的体积SSC和PSD,范围从1.8到415 m。使用LISST-SL测得的SSC和PSD与一组22个数据集(总共262个样本)进行了比较,这些数据集使用在2010年至2012年期间在16个美国地质学地区收集的物理采样器和声学多普勒电流剖面仪进行了同时的悬浮泥沙和流量测量调查伊利诺伊州和华盛顿州的流量测量站(流域面积:38-69,264 km(2))。计算出的1.24 g / mL(95%置信区间:1.05-1.45 g / mL)的有效密度(质量SSC /体积SSC)极低,提供了最佳拟合值(R-2 = 0.95; RMSE = 143 mg / L) ),以将体积SSC转换为质量SSC超过两个数量级的SSC(12-2,170 mg / L;涵盖LISST-SL可以测量的相当大范围的SSC),尽管其显着低于沉积物的密度2.67 g / mL(范围:2.56-2.87 g / mL,23个样品)。 LISST-SL测量的PSD与LISST-SL可测量尺寸范围内的物理样本得出的PSD高度吻合。提供LISST-SL的技术和操作限制是为了便于将来收集更准确的数据。此外,简要描述了由LISST-SL测量的SSC和PSD的时空变化,以激发其潜力,以增进我们对河流悬浮泥沙运输的理解。

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