Study on water hammer protection of the siphon breaking structure in the water supply system

Jiawen Lyu, Jian Zhang, Teng-gan Wang
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引用次数: 1

Abstract

An appropriate water hammer protective scheme is a significant concern in the operation of water supply projects. According to the special terrain in the water supply project, which forms a siphon breaking structure at the end of the pipeline, three protective schemes were proposed and compared: single vacuum breaking valve (VBV) scheme, VBV and air valve scheme, and VBV and one-way surge tower scheme. Based on the control standards of pipe pressure, three protective schemes were assessed in terms of suppressing the negative pressure caused by a pump trip accident. The results show that the siphon breaking structure with the VBV can achieve good effect protection only in a limited range of pipelines. In the VBV and air valve scheme, the pressure oscillations were obviously caused by repeated inlet and exhaust of the air valves. To avoid supplementing too much gas in the pipe by air valves, which will result in a gas column bridging phenomenon, the VBV and one-way surge tower scheme is proposed and can better meet the requirement of the pressure control standard.
供水系统虹吸断裂结构水锤防护研究
合理的水锤防护方案是供水工程运行中的重要问题。针对某供水工程在管道末端形成虹吸破断结构的特殊地形,提出了单真空破断阀方案、真空破断阀与空气阀方案、真空破断阀与单向调压塔方案三种保护方案,并进行了比较。根据管压控制标准,从抑制泵脱扣事故负压的角度,对三种保护方案进行了评价。研究结果表明,采用VBV的虹吸式断裂结构仅在有限的管道范围内能达到较好的防护效果。在VBV +气阀方案中,由于气阀的反复进出,压力振荡明显。为了避免气阀在管道中补充过多的气体,造成气柱桥接现象,提出了VBV和单向调压塔方案,该方案更能满足压力控制标准的要求。
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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