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Enhanced Channel Division Method for Estimation of Discharge in Meandering Compound Channel

机译:曲折复合通道中流量估计的增强通道划分方法

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Accurate prediction of shear force distribution along the boundary in open channels is a key to the solution of numerous hydraulic problems. The problem becomes more complicated for meandering compound channels. A model is developed for predicting the percentage of shear force at the floodplain (%S-fp) of two-stage meandering channels using gene-expression programming (GEP) by considering five dimensionless parameters viz. the width ratio, relative depth, sinuosity, bed slope, and meander belt width ratio as the inputs in the model. Basing on the %S-fp, the apparent shear force along the division lines of separation in compound channels is selected for discharge calculation using the conventional channel division methods. An Enhanced Channel Division Method (ECDM) is introduced to calculate discharge by assuming interface line at main channel and floodplain junction. A modified variable-inclined (MVI) interface is suggested having zero apparent shear determined from flow contribution in the main channel and floodplain. The MVI interface is further used to calculate discharge in the meandering compound channels. Performance of the GEP model is tested against other analytical methods of calculating %S-fp. Error between the observed and calculated discharges using the MVI interface is found to be the minimum when compared to other interface methods. The enhance channel division method is successfully applied for validating the two available overbank discharge values for the river Baitarani at Anandapur (drainage area of 8570 sq. km), giving the minimum errors of 0.31% and 1.02% for flow depths of 7.5 m and 8.63 m, respectively.
机译:准确预测沿明渠边界的剪力分布是解决众多水力问题的关键。对于弯曲的复合通道,问题变得更加复杂。通过考虑五个无量纲参数viz,使用基因表达编程(GEP)开发了一个模型,用于预测两阶段曲折河道的洪泛区(%S-fp)处的剪切力百分比。宽度比,相对深度,弯曲度,床坡度和曲折带宽度比作为模型中的输入。在%S-fp的基础上,使用常规通道划分方法选择沿复合通道中的分隔线的表观剪切力进行流量计算。引入了增强的通道划分方法(ECDM),通过假设主通道和洪泛区交界处的界面线来计算流量。建议使用修改后的可变倾斜(MVI)界面,该界面具有零表观剪切力,该表观剪切力由主通道和洪泛区中的流量贡献确定。 MVI接口还用于计算蜿蜒的复合通道中的流量。针对计算%S-fp的其他分析方法,测试了GEP模型的性能。与其他界面方法相比,使用MVI界面观察到的放电和计算得出的放电之间的误差最小。增强河道划分方法已成功用于验证阿南达普尔(流域8570平方公里)的贝塔拉尼河的两个可用的过水流量值,对于7.5 m和8.63的流量深度,其最小误差为0.31%和1.02%米分别。

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