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Simulation of Computation and Experimental Investigations about Water Hammer in High Lift Water Transmission Pipeline

机译:高升水输送管道水锤的计算与实验研究模拟

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摘要

For the study on water hammer protection problems of long distance, high lift and a pressurization hoisting for long distance water supply system, the paper analyzes a long distance water transmission system whose high lift is up to 2100 meters by a pressurization hoisting in southwest china. The water hammer protection model is established for high lift and long distance water transmission pipeline based on fluid mechanics, and the solution of decision model is attained by Bentley Hammer software. Then, a comparative analysis on the hydraulic characteristics is elaborated based the model solution whether the pipeline is under the prevention measure or not. The experimental results show that the damage of pump-stopping water hammer is more serious and the water column separation phenomenon probably happens without the prevention measure. When the pipeline is installed a comprehensive water hammer device with the two stage of rapid butterfly check valve and air valve, it can effectively prevent the accidental caused by pump-stopping reverse, the damage of pump-stopping water hammer and the water column separation, and ensure the safe and stable operation of the pipeline.
机译:对于长距离供水系统的高距离,高升力和加压吊装的水锤保护问题,本文分析了长途水传输系统,在中国西南部的加压吊装升降机高电梯高达2100米。基于流体力学的高升力和长距离水传输管道建立了水锤保护模型,并通过Bentley Hammer软件实现了决策模型的解决方案。然后,基于模型解决方案阐述了液压特性的比较分析,无论管道是否处于预防措施。实验结果表明,泵停止水锤的损坏更严重,水柱分离现象可能发生而不会预防措施。当管道安装了一个综合的水锤装置,用两级的快速蝴蝶止回阀和空气阀门,它可以有效地防止泵停止反向引起的意外,泵停止水锤的损坏和水柱分离,并确保管道安全稳定。

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