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Analytical Solution of Gradually Varied Flow Equation in Non-prismatic Channels

机译:非棱柱形通道中渐进式流动方程的解析解

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摘要

Computation of water surface profile in open channel is considered as an essential component of channel design in open-channel hydraulics. In this regard, gradually varied flow (GVF) is enumerated as the most frequently occurring flow regime in artificial open channels. The analytical and/or semi-analytical solutions of GVF have been acquired for some types of open channels with prismatic channel cross section using both Manning's and Chezy's resistance equations. In conventional hydraulic textbooks, the interpretation of water surface profile is mainly based on prismatic channels. Indeed, the non-prismatic term in the numerator of the governing equation creates a further obstacle for proper interpretation. In this paper, an explicit closed-form semi-analytical solution is presented for a non-prismatic rectangular channel based on Chezy's resistance equation using Adomian decomposition method. The developed semi-analytical solution compares well with both analytical and numerical solutions obtained from predictor-corrector method with very fine spatial resolution. The derived semi-analytical solution can be effectively used to conduct sensitivity analysis of pertinent parameters and compute channel discharge for a given water surface profile.
机译:明渠水面轮廓的计算被认为是明渠水力学中渠道设计的重要组成部分。在这方面,在人工明渠中,逐渐变化的流量(GVF)被列举为最频繁出现的流量状态。使用Manning和Chezy的阻力方程,已经获得了某些具有棱柱形通道横截面的明渠的GVF解析和/或半解析解。在常规的水利教科书中,对水表面轮廓的解释主要基于棱柱形通道。的确,控制方程分子中的非棱柱项为正确解释造成了进一步的障碍。在本文中,基于Chezy电阻方程,采用Adomian分解方法,给出了一种非棱柱矩形通道的显式封闭形式半解析解。所开发的半解析解决方案与从预测器-校正器方法获得的解析解决方案和数值解决方案都具有很好的空间分辨率,可以很好地进行比较。得出的半解析解可以有效地用于对相关参数进行敏感性分析,并计算给定水面轮廓的通道流量。

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