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A Short Review on Computational Hydraulics in the Context of Water Resources Engineering

机译:水资源工程背景下计算液压的简要述评

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The term “ hydraulics ” is concerned with the conveyance of water that can consist of very simple processes to complex physical processes, such as flow in open rivers, flow in pipes, the flow of nutrients/sediments, the flow of groundwater to sea waves. The study of hydraulics is primarily a mixture of theory and experiments. Computational hydraulics is very helpful to quantify and predict flow nature and behavior. The mathematical model is the backbone of the computational hydraulics that consist s of simple to complex mathematical equations with linear and/or non-linear terms and ordinary or partial differential equations. Analytical solution to th ese mathematical equations is not feasible in the majority of cases. In these consequences, mathematical models are solved using different numerical techniques and associated schemes. In this manuscript , we aim to review hydraulic principles along with their mathematical equations. Then we aim to learn some commonly used numerical technique s to solve different types of differential equations related to hydraulics. Among them , the Finite Difference Method (FDM), Finite Element Method (FEM) and Finite Volume Method (FVM) have been discussed along with their use in real-life applications in the context of water resources engineering.
机译:术语“液压系统”涉及水的运输,这些水的运输可以由非常简单的过程组成复杂的物理过程,例如在开放河流中流动,管道流动,营养素流量/沉积物,地下水流向海浪。液压学的研究主要是理论和实验的混合。计算液压系统非常有助于量化和预测流性质和行为。数学模型是计算液压的骨干,其包括具有线性和/或非线性术语和普通或部分微分方程的复杂数学方程的备份。在大多数情况下,MESE数学方程的分析解决方案是不可行的。在这些后果中,使用不同的数值技术和相关方案来解决数学模型。在本手稿中,我们的目标是与他们的数学方程一起审查水力原理。然后,我们的目标是学习一些常用的数控技术S来解决与液压有关的不同类型的微分方程。其中,已经讨论了有限差分法(FDM),有限元法(FEM)和有限体积法(FVM)以及在水资源工程背景下的现实生活中的应用。

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