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Using unsteady-state water level data to estimate channel roughness and discharge hydrograph

机译:使用非稳态水位数据估算河道粗糙度和排放水位图

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摘要

A novel methodology for simultaneous discharge and channel roughness estimation is developed and applied to data sets available at three experimental sites. The methodology is based on the synchronous measurement of water level data in two river sections far some kilometers from each other, as well as on the use of a diffusive flow routing solver and does not require any direct velocity measurement. The methodology is first analyzed for the simplest case of a channel with a large slope, where the kinematic assumption holds. A sensitivity and a model error analysis are carried out in this hypothesis in order to show the stability of the results with respect to the error in the input parameters in the case of homogeneous roughness and to analyze the effect of unknown roughness heterogeneity on the estimated discharges. The methodology is then extended to the more general case of channels with mild slope and validated using field data previously collected in three Italian rivers: the Arno (in Tuscany), the Tiber (in Latium) and the Vallo di Diana, a small tributary of the Tanagro river (in Southern Italy). The performance of the proposed algorithm has been investigated according to three performance criteria estimating the quality of the match between the measured and the computed stage and discharge hydrographs. Results of the field tests can be considered good, despite the uncertainties of the field data and of the measured values.
机译:开发了一种同时进行放电和通道粗糙度估算的新颖方法,并将其应用于三个实验点可获得的数据集。该方法基于对相距几公里的两条河段中水位数据的同步测量,以及使用扩散流路径求解器,不需要任何直接速度测量。首先对运动学假设成立的,具有大斜率的通道的最简单情况进行分析。在此假设中进行了灵敏度和模型误差分析,目的是在均匀粗糙度的情况下显示结果相对于输入参数误差的稳定性,并分析未知粗糙度不均匀性对估计放电量的影响。然后,该方法被扩展到具有较缓坡度的河道的更一般情况,并使用先前在意大利的三条河流中采集的现场数据进行了验证:阿尔诺(托斯卡纳),台伯河(拉提姆河)和瓦洛迪戴安娜河(一条小支流)塔纳格罗河(在意大利南部)。已经根据三个性能标准对提出的算法的性能进行了研究,该三个性能标准估计了实测水位图和计算出的水位图之间的匹配质量。尽管现场数据和测量值存在不确定性,但现场测试的结果仍被认为是良好的。

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