首页> 外文期刊>Journal of the American Water Resources Association >ESTIMATING SEDIMENT AND NUTRIENT LOADS IN FOUR WESTERN LAKE SUPERIOR STREAMS
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ESTIMATING SEDIMENT AND NUTRIENT LOADS IN FOUR WESTERN LAKE SUPERIOR STREAMS

机译:估算西部四个湖泊优质流域的沉积物和营养负荷

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摘要

Total suspended solids (TSS) and total phosphorus (TP) have been shown to be strongly correlated with turbidity in watersheds. High-frequency in situ turbidity can provide estimates of these potential pollutants over a wide range of hydrologic conditions. Concentrations and loads were estimated in four western Lake Superior trout streams from 2005 to 2010 using regression models relating continuous turbidity data to grab sample measures of TSS and TP during differing flow regimes. TSS loads estimated using the turbidity surrogate were compared with those made using FLUX software, a standard assessment technique based on discharge and grab sampling for TSS. More traditional rating curve methodology was not suitable because of the high variability in the particulates vs. discharge relationship. Stream-specific turbidity and TSS data were strongly correlated (r~2 = 0.5 to 0.8; p < 0.05) and less so for TP (r~2 = 0.3 to 0.7; p < 0.05). Near-continuous turbidity monitoring (every 15 min) provided a good method for estimating both TSS and TP concentration, providing information when manual sample collection was unlikely, and allowing for detailed analyses of short-term responses of flashy Lake Superior tributaries to highly variable weather and hydrologic conditions while the FLUX model typically resulted in load estimates greater than those determined using the turbidity surrogate, with 17/23 stream years having greater FLUX estimates for TSS and 18/23 for TP.
机译:总悬浮物(TSS)和总磷(TP)已显示与流域的浊度密切相关。高频原位混浊度可以提供各种水文条件下这些潜在污染物的估计值。使用回归模型将连续浊度数据与2005年至2010年期间的四个西苏必利尔湖鳟鱼溪流中的浓度和负荷进行估算,以获取不同流量状态下TSS和TP的样本量。将使用浊度替代物估算的TSS负载与使用FLUX软件进行的负载进行比较,FLUX软件是基于流量和TSS采样的标准评估技术。由于颗粒与排放之间的关系存在较大差异,因此较不适合使用传统的额定曲线方法。溪流特定的浊度和TSS数据密切相关(r〜2 = 0.5至0.8; p <0.05),而TP的相关性较小(r〜2 = 0.3至0.7; p <0.05)。近乎连续的浊度监测(每隔15分钟)为估算TSS和TP浓度提供了一种很好的方法,可以在不太可能进行手动采样的情况下提供信息,并可以详细分析浮华苏必利尔湖支流对高度变化的天气的短期响应和水文条件,而FLUX模型通常得出的负荷估算值大于使用浊度替代方法确定的负荷估算值,其中17/23个流年对TSS的FLUX估算值更大,而TP的18/23。

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