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Research on the water hammer protection of the air vessel caused by underground pipe burst in long distance water supply system

机译:长距离供水系统地下管爆发引起的空气锤防水保护研究

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摘要

The conventional air vessel installation is usually installed behind the check valve at the upstream end of the pipeline to effectively control the water hammer pressure due to pump trip. However, the water hammer pressure caused by underground pipe burst has been neglected. The water hammer protection of air vessel due to pipe burst in long distance water supply system was discussed in this paper. According to analysis of the process of the pipe burst, the mathematical model of underground pipe burst and air vessel were established. A new air vessel installation that was installed in the middle of the pipeline was proposed. The new air vessel installation was simulated by method of characteristics. Then it was compared with the conventional air vessel when the pump trip and the pipe burst occur respectively. The results show that both the conventional air vessel and the new air vessel can effectively protect the water hammer duo to the pump trip. Moreover, when pipe burst occurs, the conventional air vessel cannot achieve the safe operation of the long distance water supply system. However, under the same air vessel type parameters, the new air vessel installation can effectively protect the water hammer pressure.
机译:传统的空气容器装置通常安装在管道上游端的止回阀后面,以有效地控制由于泵跳而导致的水锤压力。然而,由地下管道突发引起的水锤压力被忽略了。本文讨论了在长距离供水系统中引起的气体血管的水锤保护。根据分析管道突发的过程,建立了地下管突发和空气血管的数学模型。提出了一种在管道中间安装的新型空气船舶安装。通过特性方法模拟新的空气血管安装。然后,当泵跳闸和管道突发分别发生时与传统的空气容器进行比较。结果表明,传统的空气容器和新型空气容器都可以有效地保护水锤二重奏泵跳闸。而且,当发生管道突发时,传统的空气容器不能达到长距离供水系统的安全操作。然而,在相同的空气容器类型参数下,新的空气容器安装可以有效地保护水锤压力。

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