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Application of Loosely Coupled Watershed Model and Channel Model in Yellow River, China

机译:松耦合流域模型和航道模型在黄河的应用

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Insufficient flow and excessive sediment supply in the Middle Yellow River lead to persistent sedimentation and rising flood levels in the lower river channel. Better understanding of the relationship between sediment erosion, transportation, and deposition can help in the decision making of soil and water conservation in the Coarse Sediment Source Area (CSSA) and sediment reduction works in the lower channel. A linked simulation can help elucidate the interrelationship. The goal of the current research is to simulate the whole sediment process from the CSSA to the downstream channels of the Yellow River. To achieve this goal, we use the Digital Yellow River Model (DYRM), a watershed hydrology and sediment yield and transportation model plate, coupled with a one-dimensional (ID) unsteady model for the hyper-concentrated sediment-laden flow in complex sections, to study the sedimentation process in the entire watershed. The performance of the simulation of flood in year 1977 was evaluated using the percent bias, Nash-Sutcliffe statistics of the residuals, and percentage difference. Simulation of the sediment process in 1977 shows that linked simulation can describe the hydrographs of discharge and sediment concentrations, especially flood in the downstream main channels. Compared with the underestimated discharge and sediment load in the main channel, the discharge of most tributaries is overestimated, whereas most of the sediment load is underestimated. The inconsistency indicates that more efforts are required to conduct better simulation, including data input and data processing, and both DYRM and ID models.
机译:黄河中游的流量不足和过多的泥沙供应导致持续的泥沙淤积和下游河道的洪水位上升。更好地了解沉积物的侵蚀,运输和沉积之间的关系,有助于决策粗泥沙源区(CSSA)的水土保持和下河道的减沙工作。链接的模拟可以帮助阐明相互关系。当前研究的目的是模拟从CSSA到黄河下游河道的整个沉积过程。为了实现此目标,我们使用数字黄河模型(DYRM),流域水文和沉积物产量与运输模型板,以及一维(ID)非定常模型来处理复杂断面中的高浓度含沙流,研究整个流域的沉积过程。使用百分比偏差,残差的Nash-Sutcliffe统计数据和百分比差异来评估1977年洪水模拟的性能。 1977年对沉积物过程的模拟表明,链接模拟可以描述流量和沉积物浓度的水位图,尤其是下游主河道的洪水。与主河道的流量和泥沙量被低估相比,大多数支流的流量被高估了,而大部分泥沙流量却被低估了。不一致表明需要付出更多的努力才能进行更好的仿真,包括数据输入和数据处理以及DYRM和ID模型。

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