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首页> 外文期刊>Journal of Hydrology >Integrating hydrograph modeling with real-time flow monitoring to generate hydrograph-specific sampling schemes
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Integrating hydrograph modeling with real-time flow monitoring to generate hydrograph-specific sampling schemes

机译:将水位线图建模与实时流量监控相集成,以生成水位线特定的采样方案

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摘要

Automated sample collection for water quality research and evaluation generally is performed by simple time-paced or flow-weighted sampling protocols. However, samples collected on strict time-paced or flow-weighted schemes may not adequately capture all elements of storm event hydrographs (i.e., rise, peak, and recession). This can result in inadequate information for calculating chemical mass flux over storm events. In this research, an algorithm was developed to guide automated sampling of hydrographs based on storm-specific information. A key element of the new " hydrograph-specific sampling scheme" is the use of a hydrograph recession model for predicting the hydrograph recession curve, during which flow-paced intervals are calculated for scheduling the remaining samples. The algorithm was tested at a tile drained Midwest agricultural site where real-time flow data were processed by a programmable datalogger that in turn activated an automated sampler at the appropriate sampling times to collect a total of twenty samples during each storm event independent of the number of sequential hydrographs generated. The utility of the algorithm was successfully tested with hydrograph data collected at both a tile drain and agricultural ditch, suggesting the potential for general applicability of the method. This sampling methodology is flexible in that the logic can be adapted for use with any hydrograph recession model; however, in this case a power law equation proved to be the most practical model.
机译:用于水质研究和评估的自动样本采集通常是通过简单的定时采样或流量加权采样协议进行的。但是,以严格的时间步调或流量加权方案收集的样本可能无法充分捕获暴风雨事件水位图的所有要素(即上升,峰值和衰退)。这可能导致用于计算暴风雨事件中化学物质通量的信息不足。在这项研究中,开发了一种算法来指导基于风暴特定信息的水文自动采样。新的“水文特定采样方案”的关键要素是使用水文衰退模型预测水文衰退曲线,在此过程中,将计算流量间隔以安排剩余样本。该算法在美国中西部一个瓷砖排水的农业现场进行了测试,该现场的实时流量数据由可编程数据记录器处理,该数据记录器又在适当的采样时间激活了自动采样器,以在每次暴风雨事件期间收集总数为20的样本,而与数量无关生成的连续水位图。该算法的实用性已通过在瓷砖排水沟和农业沟渠处收集的水位图数据成功进行了测试,表明该方法具有普遍适用性。这种采样方法非常灵活,因为其逻辑可以适用于任何水文衰退模型。但是,在这种情况下,幂律方程被证明是最实用的模型。

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