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A New Numerical Model Used to Predict High-Frequent Transients in Liquid Pipeline Flow with More Accurate

机译:一种新的数值模型,用于更精确地预测液体管道流动中的高频瞬变

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摘要

High-frequent transients and steady flow in liquid pipelines have distinct flow characteristics. If the classic quasi-steady friction model is used in high-frequent transients in liquid pipelines, wall friction losses would be underestimated evidently. As a result, the key physical processes such as attenuation and phase shift of pressure traces in high-frequent transients could not be simulated exactly. In this paper, a new numerical model which has more accurate prediction of high-frequent transients in liquid pipe flow has been proposed and its numerical solution with the method of characteristics has been obtained. The corresponding calculation programs of the classic quasi-steady friction model and unsteady friction model have been developed and applied to transient simulation in an experimental pipeline. Compared to the results of measurements, the computational results of the unsteady friction model show more accurate and predominant than that of the classic quasi-steady friction model.
机译:液体管道中的高频瞬变和稳定流动具有明显的流动特性。如果在液体管道的高频瞬变中使用经典的准稳态摩擦模型,那么壁摩擦损失将明显被低估。结果,无法精确模拟关键的物理过程,例如高频瞬变中压力迹线的衰减和相移。本文提出了一种新的数值模型,该模型可以更准确地预测液体管道流动中的高频瞬变,并通过特征方法获得了数值解。开发了经典准稳态摩擦模型和非稳态摩擦模型的相应计算程序,并将其用于实验管道的瞬态仿真。与测量结果相比,非稳态摩擦模型的计算结果比经典准稳态摩擦模型的计算结果更准确,更占优势。

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