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An improved solution for diffusion waves to overland flow

机译:扩散波向陆流的改进解决方案

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Diffusion wave equation describes the flood wave propagation which is used in solving overland and open channel flow problems. Therefore, it is important to understand and solve the diffusion wave equations accurately. For this purpose, researchers have previously developed several analytical and numerical methods for the solution of the partial differential equation of diffusion waves. The solution derived by Kazezyilmaz-Alhan and Medina (2007) [12] can be used to solve overland flow problems during rainfall events with both constant and variable rainfall intensity, and with constant hydraulic diffusivity and wave celerity. In this paper, this method is improved by employing the De Hoog algorithm instead of Stehfest algorithm for Laplace inversion and adapting the solution to variable hydraulic diffusivity and wave celerity. In addition, the performances of the Stehfest and the De Hoog algorithms are compared. Synthetic examples are solved by using both Stehfest and De Hoog algorithms incorporated into the existing analytical solution to present the accuracy of the De Hoog algorithm over the Stehfest algorithm. The examples are also solved by using the new method in order to demonstrate the improvement over the existing method.
机译:扩散波方程描述了洪水波的传播,用于解决陆上和明渠流问题。因此,准确理解和求解扩散波方程很重要。为此,研究人员先前已经开发出了几种解析和数值方法来求解扩散波的偏微分方程。由Kazezyilmaz-Alhan和Medina(2007)[12]导出的解决方案可用于解决降雨事件中具有恒定和变化的降雨强度以及恒定的水力扩散率和波速的陆上水流问题。在本文中,通过使用De Hoog算法代替Stehfest算法进行Laplace反演并对解决方案适应可变的水力扩散率和波速进行了改进。此外,还比较了Stehfest算法和De Hoog算法的性能。通过使用结合到现有分析解决方案中的Stehfest算法和De Hoog算法来解决合成示例,以提供De Hoog算法优于Stehfest算法的准确性。通过使用新方法也解决了这些示例,以证明对现有方法的改进。

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