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Evaluation of Plane Wave Assumption in Transient Laminar Pipe Flow Modeling and Utilization

机译:瞬态层流管流动建模与利用平面波假设的评价

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The plane wave assumption is key to the formulation of one dimensional (1D) and quasi-2D water hammer models, which have been widely used in the design and evaluation of fluid piping systems. As transient analysis and utilization are becoming more and more popular and important to pipe system diagnosis such as pipe faults (leakage and blockage) detection, a better understanding of the influence of plane wave assumption on the transient responses is necessary and critical to the development and application of such innovative technologies. This study aims to (i) address the efficiency problem of existing 2D scheme, and then extend the full-2D water hammer model to a classical reservoir-pipe-valve system so as to simulate the whole process of typical water hammer event; and (ii) estimate the accuracy of plane wave assumption for reproducing pressure histories under both low frequency wave (LFW) and high frequency wave (HFW) conditions. The results confirm that the plane wave assumption is invalid during the period shortly after valve closure, and the influence of radial pressure wave is evident when the incident wave frequency is larger than the radial wave frequency. Moreover, the radial wave dissipation and dispersion rates are highly dependent on the incident wave frequency. This result may provide implication to the utilization of different transient waves (LFW & HFW) for the pipeline assessment in this field.
机译:平面波假设是用于配方的一维(1D)和准2D水锤模型的关键,该模型已广泛用于流体管道系统的设计和评估。由于瞬态分析和利用越来越受欢迎,对管道故障(泄漏和堵塞)检测等管道系统诊断变得越来越受欢迎,并且更好地了解平面波假设对瞬态响应的影响是必要的,并且对开发和关键这种创新技术的应用。本研究旨在(i)解决现有2D方案的效率问题,然后将全2D水锤模型延伸到经典水库 - 管道系统,以模拟典型水锤事件的整个过程; (ii)估计在低频波(LFW)和高频波(HFW)条件下再现压力历史的平面波假设的精度。结果证实,在阀门闭合后不久的时间段内,平面波假设无效,并且当入射波频率大于径向波频率时,径向压力波的影响是明显的。此外,径向波耗散和色散速率高度依赖于入射波频率。该结果可以对利用不同瞬态波(LFW和HFW)来提供对该领域的管道评估的影响。

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