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Water Hammer Analysis for Heated Liquid Transmission Pipeline with Entrapped Gas Based on Homogeneous Flow Model and Fractional Flow Model

机译:基于均质流模型和分数流模型的夹带气加热液体输送管道水锤分析

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In view of the hydraulic transient problem in heated liquid pipeline with entrapped gas, water hammer analysis equations are built. The solve methods are discussed based on homogeneous flow model and fractional flow model. Then VC++ is utilized to develop a computer program to simulate the hydraulic transient behavior. Ultimately, this paper simulates the hydraulic transient behavior on the conditions which include different initial void fraction in liquid, a constant liquid level at upstream end and sudden closure of valve at downstream end of pipeline. The simulation results not only suggest higher void fraction in liquid lead to lager of water hammer wave response, lower of fluctuation frequency and quicker of pressure wave damping but also indicate small amount of gas in liquid can weaken pressure increasing caused by water hammer. At the same time, the differences between the two models' simulation results are analyzed, the analysis shows that fractional flow model is better than homogeneous flow model if liquid column separation phenomenon occurs. The study results are benefit to guide the hydraulic transient problem in practical.
机译:考虑到加热液体管道中具有夹带气体的液压瞬态问题,建造了水锤分析方程。基于均匀流动模型和分数流模型讨论了求解方法。然后,使用VC ++来开发计算机程序以模拟液压瞬态行为。最终,本文模拟了在液体中包括不同初始空隙率的条件上的液压瞬态行为,在管道的下游端突然闭合阀门的恒定液位。仿真结果不仅表明液体导致更高的空隙部分导致水锤波响应,波动频率的较低和压力波阻尼的更快,而且表示液体中的少量气体可以削弱由水锤引起的压力增加。同时,分析了两种模型的仿真结果之间的差异,分析表明,如果发生液柱分离现象,则分数流模型比均匀流动模型更好。研究结果有利于实际引导液压瞬态问题。

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