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Transient analysis of water supply mains

机译:供水主管的瞬态分析

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摘要

Typical upset sources (like sudden valve closure, pump failure etc.) in a liquid service pipeline network may result in problems due to water hammer. Steep pressure increase (upsurge) and decrease (downsurge) are often generated by such events and the pressure upset quickly propagates over the system along the associated pipeline. The pressure wave propagation may cause over pressurization or vacuum; sometimes it may also induce secondary pressure upset due to vapour cavity formation and collapse (vaporization and condensation) at highly elevated portions, dead ends, etc. Steep pressure changes may induce impulsive fluid dynamic loads on the pipeline which may cause serious piping vibration and damage to pipe supports, valve and equipment casings. An attempt has been made to model and simulate the flow in water mains to identify the magnitude and location of upsurge and downsurge pressures in the pipeline. A program has been developed to serve this purpose using the object oriented programming approach. The method of characteristics is used to compute the flow parameters. A GUI is created to model the system and obtain real time system data as graphical outputs and spreadsheets which can be easily interpreted by the user. Thus the simulation helps decide the kind of safety device required in the water mains. The results have been verified on an existing experimental set up.
机译:液体服务管道网络中的典型故障源(例如突然的阀关闭,泵故障等)可能由于水锤而导致问题。此类事件通常会导致陡峭的压力增加(上升)和下降(下降),并且压力异常会沿着相关的管道在系统上迅速传播。压力波的传播可能会导致压力过大或真空。有时它还可能由于在高高的部分,死角等处形成蒸汽腔和塌陷(汽化和冷凝)而引起二次压力失常。陡峭的压力变化可能会在管道上引起脉冲流体动态载荷,从而可能导致严重的管道振动和损坏。到管道支架,阀门和设备外壳。已经尝试对总管中的流量进行建模和模拟,以识别管道中的上升和下降压力的大小和位置。已经开发了一种程序来使用面向对象的编程方法来实现此目的。特征方法用于计算流量参数。创建一个GUI来对系统进行建模并获得实时系统数据,作为图形输出和电子表格,用户可以轻松地对其进行解释。因此,模拟有助于确定自来水管中所需的安全装置的类型。结果已在现有的实验装置上得到验证。

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