Does intermittent supply result in hydraulic transients? Mixed evidence from two systems

J. Erickson, K. Nelson, David D. J. Meyer
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引用次数: 3

Abstract

Pressure transients can cause severe damage in continuous water supply pipe networks, but little is known about pressure transients in intermittent networks. Published examples of high-frequency pressure monitoring in intermittent networks are lacking. Intermittent supply can be caused by the poor network condition and is associated with delivering less water, less frequently, and with poorer quality than continuous supply. Given the frequency with which intermittent systems drain, fill, and change supply regimes, pressure transients have been hypothesized to be common and to be one mechanism by which intermittent supply further degrades the network condition. We present supply start-up data from two very different intermittent systems: a low-pressure, intermittent network in Delhi, India, and a higher-pressure intermittent network in Arraiján, Panama. Across both sites, we found no evidence of substantial pressure transients due to pipe filling. In Arraiján, pump start-ups, pump shutdowns, and pipe bursts were associated with potentially problematic transients. We conclude that pipe filling in the intermittent supply does not always result in concerning pressure transients. The largest risks to pipe conditions we observed were due to pumping changes in close succession; hence, we recommend that utilities operating intermittent (and continuous) systems leave adequate dissipation time between changes in pump operation.
间歇供应是否会导致水力瞬变?来自两个系统的混合证据
在连续供水管网中,压力瞬变会造成严重的破坏,但对间歇供水管网的压力瞬变却知之甚少。在间歇性网络中进行高频压力监测的公开例子缺乏。间歇性供水可能是由于供水网络状况不佳造成的,与连续供水相比,间歇性供水的供水量更少、频率更低、质量更差。鉴于间歇性系统排水、填充和改变供应制度的频率,假设压力瞬变是常见的,并且是间歇性供应进一步降低网络条件的一种机制。我们介绍了两个非常不同的间歇系统的供电启动数据:位于印度德里的低压间歇网络和位于巴拿马Arraiján的高压间歇网络。在这两个地点,我们没有发现由于管道填充造成的大量压力瞬变的证据。在Arraiján中,泵启动、泵关闭和管道爆裂都与潜在的问题瞬变有关。我们得出结论,间歇供水的管道填充并不总是导致相关压力瞬变。我们观察到的对管道状况的最大风险是由于连续泵送的变化;因此,我们建议运行间歇(和连续)系统的公用事业公司在泵运行的变化之间留出足够的耗散时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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