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首页> 外文期刊>The Science of the Total Environment >Sampling frequency and accuracy of SPM flux estimates in two contrasted drainage basins
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Sampling frequency and accuracy of SPM flux estimates in two contrasted drainage basins

机译:两个对比流域中SPM通量的采样频率和准确性

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The present paper is based on discharges and suspended particulate matter concentrations from a 9-years high-resolution database for the Garonne River (large plain river) covering contrasted hydrologic years, and a 12-months high frequency sampling for the Nivelle River (small mountainous river). Annual SPM fluxes in the Garonne River range from 0.6 x 10(6) t year(-1) (1997) to 3.9 x 10(6) t year(-1) (1996). In contrast, the Nivelle River transported 11 x 10(3) t year(-1) from December 1995 to December 1996. From the long-term observation of the Garonne River an empirical relation between SPM* (discharge-weighted mean annual SPM concentrations) and annual discharge was established. This relation allows estimating annual SPM fluxes for the Garonne River with less than 30% deviation from reference values for the whole range of mean annual discharge observed during the past decade. Specific (= area-normalized) annual SPM fluxes (Y-SPM) range from 11 to 74 t km(-2) year(-1) for the Garonne River. Comparison of these results with Y-SPM of the Nivelle River (69 t km(-2) year(-1) in 1996) suggests that interannual hydrological variations may have a greater impact on fluvial SPM transport than basin-specific parameters. By extracting individual SPM concentrations and corresponding discharge values from the database, different sampling frequencies were simulated and resulting SPM fluxes were then compared to reference fluxes derived from the complete database. If a deviation of simulated flux estimates from reference fluxes lower than +/-20% is accepted, the Garonne River (large plain river) must be sampled at least every 3 days (10 samples per month) and the Nivelle River every 7 h (approx. 100 samples per month). For the Garonne River this minimum sampling frequency is valid for all contrasted hydrologic years of the observation period. Below these minimum sampling frequencies, annual SPM flux estimates may greatly differ from reference fluxes (up to 200%) and there is high probability of systematic underestimation. Consequently, annual SPM flux estimates for the Garonne River derived from the empirical relation (SPM*-annual discharge) are likely to be more satisfactory (errors < 30%) than estimates based on sampling frequencies lower than the minimum frequency. These findings underline the need of adapted sampling strategies for erosion assessment, reliable chemical (e.g. nutrients and pollutants) mass balances and characterisation of fluvial transport mechanisms in the world's contrasted watersheds. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文基于9年来高分辨率的Garonne河(大型平原河)的数据库的排放量和悬浮颗粒物浓度,涵盖了对比的水文年,以及Nivelle河(小型山区)的12个月高频采样河)。加龙河的年SPM通量范围从0.6 x 10(6)t year(-1)(1997)到3.9 x 10(6)t year(-1)(1996)。相比之下,从1995年12月到1996年12月,尼维河的运输量为11 x 10(3)t year(-1)。从对加龙河的长期观察中,SPM *(排放权重的年均SPM浓度)之间存在经验关系。 ),并建立了年度排放量。这种关系可以估算出加龙河的年度SPM通量,在过去十年中观察到的整个年均排放量范围内,与参考值的偏差小于30%。加龙河的特定(=面积归一化)年度SPM通量(Y-SPM)范围从11到74 t km(-2)年(-1)。将这些结果与Nivelle河的Y-SPM(1996年为69 t km(-2)year(-1))进行比较,表明年际水文变化对河流SPM运移的影响可能大于流域特定参数。通过从数据库中提取各个SPM浓度和相应的排放值,可以模拟不同的采样频率,然后将所得SPM通量与从完整数据库中得出的参考通量进行比较。如果接受的模拟通量估算值与参考通量之间的偏差低于+/- 20%,则必须至少每3天(每月10个采样)和每7小时对Nivelle河采样一次(大平原河)(每月大约100个样本)。对于加龙河,该最小采样频率对观测期的所有对比水文年均有效。在这些最低采样频率以下,年度SPM通量估计值可能与参考通量(高达200%)有很大差异,并且系统被低估的可能性很大。因此,根据经验关系(SPM *-年排放量)得出的加龙河的年度SPM通量估计值可能比基于低于最小频率的采样频率的估计值更令人满意(误差<30%)。这些发现强调了需要采用适当的采样策略进行侵蚀评估,可靠的化学物质(例如养分和污染物)质量平衡以及在世界上形成对比的流域的河流运输机制的特征。 (C)2004 Elsevier B.V.保留所有权利。

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