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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Semi-Implicit Numerical Models of Flood Hydraulic Routing (A Case Study: Lighvan-Hervi Reach of Lighvan-Chai, Tabriz)
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Semi-Implicit Numerical Models of Flood Hydraulic Routing (A Case Study: Lighvan-Hervi Reach of Lighvan-Chai, Tabriz)

机译:洪水水力调度的半隐式数值模型(案例研究:大不里士Lighvan-Chai的Lighvan-Hervi河段)

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River flow routing has been a significant issue in hydraulic engineering. The main goal of this research work was solving Saint-Venant equations by using the semi-implicit finite difference scheme and considering energy conservation principle at the discontinuous points of flow field. In this model, with the first order accuracy, the flux limiter scheme and Upwind for the scheme are used for the satisfaction of TVD condition and discretization of the advection phrase in the momentum equation, respectively. By using three assessment functions including Nash-.Sutcliffe, sum square error and correlation coefficient, the performance of the model was evaluated for flood routing through Lighvan-Chai River between Lighvan and Hervi hydrometric stations with the application of twenty cross-sections. Manning roughness coefficient as a parameter for calibration and verification processes was determined to be 0.028. Finally, a comparison was made between nonlinear Muskingham hydrological method and the presented model through the same river reach. The amount of assessment functions for the semi-implicit model was calculated to be more than the hydrological one. The results showed that the presented model not only had high calculative efficiency and no limitation in time step calculation, but also displayed more accuracy for the hydrodynamic characteristics of flow.
机译:河流径流路线一直是水利工程中的重要问题。这项研究工作的主要目标是通过使用半隐式有限差分方案并考虑流场不连续点处的节能原理来求解Saint-Venant方程。在该模型中,具有一阶精度,通量限制器方案和该方案的逆风分别用于满足TVD条件和动量方程中对流短语的离散化。通过使用Nash-.Sutcliffe,求和平方误差和相关系数这三个评估函数,使用20个横截面,评估了Lighvan和Hervi水文站之间通过Lighvan-Chai河的洪水路由的模型性能。曼宁粗糙度系数作为用于校准和验证过程的参数确定为0.028。最后,对同一河段的非线性Muskingham水文方法与所提出的模型进行了比较。计算得出的半隐含模型的评估函数数量要比水文模型多。结果表明,该模型不仅计算效率高,时步计算不受限制,而且对流的水动力特性具有更高的精度。

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