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Hydraulic Transients Analysis in Pipe Networks by the Method of Characteristics (MOC)

机译:基于特征法的管网水力瞬变分析

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The paper presents results of an experimental and theoretical study of the hydraulic transients in straight pipes and numerical simulations of unsteady flow in pipe networks. A mathematical model consists of a set of partial differential equations of hyperbolic type, which have been transformed by the method of characteristics into ordinary differential equations which are solved by the predictor-corrector method. Experimental tests have been performed, in order to examine the hydraulic transients phenomenon, in a single straight steel pipe. The experiments were carried out in the hydraulic laboratory of the Institute of Water Supply and Water Engineering, Environmental Engineering Faculty, Warsaw University of Technology. The numerical results show that the presented one dimensional model for a single pipe correctly describes the phenomenon since there is a good agreement with experimental maximum and minimum oscillations. In the paper, selected exemplary equations in a difference form for the pipe networks are also presented. One calculation example is given relating to the complex water-pipe network consisting of 17 loops, 48 pipelines and 33 nodes, supplied by two independent sources. Water-hammer throughout the whole pipeline network was caused by closing the gate valve at mid-point of one selected pipe. The results of the numerical calculations are presented in graphic form with respect to the final cross-sections of pipes.
机译:本文介绍了对直管中的水力瞬变进行实验和理论研究的结果,以及管网中非定常流动的数值模拟。一个数学模型由一组双曲型偏微分方程组组成,它们已经通过特征方法转化为普通的微分方程,并通过预测校正方法进行了求解。为了检查水力瞬变现象,已经在单个直钢管中进行了实验测试。实验是在华沙理工大学环境工程学院供水与水工程研究所的水力实验室进行的。数值结果表明,所提出的单个管道的一维模型正确地描述了这种现象,因为与实验的最大和最小振荡有很好的一致性。在本文中,还介绍了以不同形式为管网选择的示例方程式。给出了一个与复杂的水管网络有关的计算示例,该网络由17个回路,48个管道和33个节点组成,由两个独立的来源提供。整个管道网络中的水锤是由于在选定的一根管道的中点关闭闸阀造成的。相对于管道的最终横截面,以图形形式显示了数值计算的结果。

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