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Valve Maneuver Prediction in Simple and Complicated Pipeline Systems

机译:简单复杂管道系统中的阀门操纵预测

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摘要

The pressure and flow variations in pipeline systems are extremely sensitive to dynamic operations of the valves. Valve control and propagation of pressure waves along pipelines and their interactions with different pipeline elements introduce pressure transients in pipeline systems. The time series of the pressure head at any designated position depends on boundary conditions such as valve maneuver as well as geometrical and material characteristics of the pipeline system. An innovative method is proposed to calibrate the valve trajectory using pressure head records. The impedance method and particle swarm optimization were integrated with decomposition of convolution between the pressure response function and time series of the valve maneuver. To validate the applicability of this study, the developed method was tested in three hypothetical pipeline systems: a simple reservoir pipeline valve, multiple reservoir pipeline valves, and a complicated pipe network. Decomposition of the transfer function in the time domain and its convolution contributed toward improving the efficiency of the developed method. The successful calibrations of valve actions demonstrate the potential of the proposed scheme as an alternative to conventional flow meters for high-resolution flow rate evaluation.
机译:管道系统中的压力和流量变化对阀门的动态操作极为敏感。阀门控制和沿管道的压力波传播以及它们与不同管道元件的相互作用在管道系统中引入了压力瞬变。压力头在任何指定位置的时间序列取决于边界条件,例如阀门操纵以及管道系统的几何和材料特性。提出了一种使用压力头记录来校准阀门轨迹的创新方法。阻抗方法和粒子群优化方法与压力响应函数和阀门操纵的时间序列之间的卷积分解相结合。为了验证这项研究的适用性,在三种假设的管道系统中对开发的方法进行了测试:简单的储层管线阀门,多个储层管线阀门和复杂的管网。传递函数在时域中的分解及其卷积有助于提高所开发方法的效率。阀门动作的成功校准证明了该方案的潜力,可以替代传统流量计进行高分辨率流速评估。

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