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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering >Investigation and development of an innovative pigging technique for the water-supply industry
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Investigation and development of an innovative pigging technique for the water-supply industry

机译:供水行业创新清管技术的研究与开发

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Water-supply companies monitor the state of their pipe networks and ensure that the pipes are clean and free of inert loose deposits by flushing and pigging. Flushing involves forcing high speed water through the pipes so as to carry away particulates, pigging consists of forcing an object (the pig) through the pipe so as to push or wipe away the loose material. Both systems have drawbacks; the first tends to use very large volumes of water, and it may be impossible to get the required velocities in large-diameter pipes. The second requires purpose built launch and receive stations and may run the risk of damaging the pipe walls. This paper presents an innovative alternative to water flushing or conventional pigging for the potable-water-supply industry. This alternative uses a phase change material (ice–water slurry), which can be introduced into and removed from existing pipe networks with minimal alterations. The underlying concept is that when an ice slurry is propelled through pipes at modest speeds, the wall shear is two to four orders of magnitude higher than that which would have been achieved had water (only) been travelling in the pipe at the same speed. Thus, even with relatively low speeds, the ‘ice pig’ is able to achieve efficient cleaning and removal of loose materials. This technology has the advantage that the ice pig changes its shape to fit the containing topology, hence it is able to navigate bends, contraction/expansions and partly open vales, while cleaning the containment walls and transporting particulates. Lastly, the ice pig is guaranteed never to get stuck, as it will simply melt away, if left for sufficient time. The paper presents laboratory experimental data, qualitatively demonstrating the capability of the technique and quantitative data enabling engineers to scale and size the ice pig for full scale trials. Finally, preliminary work from full scale trails on live water trunk mains is briefly presented and discussed.
机译:供水公司监控其管道网络的状态,并确保管道清洁,并通过冲洗和清管来清除惰性疏松的沉积物。冲洗涉及迫使高速水通过管道以带走微粒,清管包括迫使物体(清管器)通过管道以推动或擦去松散的物料。两种系统都有缺点。第一种倾向于使用大量的水,并且可能无法在大直径管道中获得所需的速度。第二个要求专门建造的发射站和接收站,并可能存在损坏管壁的风险。本文提出了一种创新的替代方法,用于饮用水工业的冲洗或常规清管。此替代方法使用相变材料(冰水浆),可以以最小的改动将其引入到现有管网中或从中删除。基本概念是,当冰浆以适度的速度通过管道推进时,壁剪切力要比水(仅)以相同速度在管道中流动时所获得的剪切力高2至4个数量级。因此,即使速度相对较低,“冰猪”仍可以有效地清洁和清除松散的材料。该技术的优势在于,冰猪可以改变其形状以适应其容纳的拓扑结构,因此它能够在弯曲,收缩/膨胀和部分打开的谷轮的情况下导航,同时清洁容纳壁并运输颗粒。最后,保证冰猪永远不会被卡住,因为如果放置足够的时间,冰猪只会融化掉。本文介绍了实验室实验数据,定性地证明了该技术的能力和定量数据,使工程师能够对冰猪进行规模化和规模化的大规模试验。最后,简要介绍和讨论了活水干管总成上满规模步道的初步工作。

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