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Analysis of Pneumatic Pipeline Using by CIP Method with High Speed and Accurate Computing Method of Frequency-dependent Friction

机译:高速CIP法对气动管道的分析及频变摩擦的精确计算方法

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To accurately calculate the transient response in laminar flow, it is necessary to use frequency-dependent friction considering the velocity distribution. We developed a high speed and accurate computing method for simulating the friction in transient laminar pipe flow in the method of characteristics. This method consists of approximating W. Zielke's weighing function as a sum of impulse responses of first order lag systems. It is not usually applied to other calculating methods except the method of characteristics. In this paper, we propose application of the high speed and accurate calculating method of frequency-dependent friction to the CIP method. This proposed method has a higher flexibility than the method of characteristics in terms of the relation between discrete time and space. We measured transient response in the single, series, branch and complex pipelines. The results of the numerical calculation agree well with that of the experiment.
机译:为了准确计算层流中的瞬态响应,必须考虑速度分布,使用频率相关的摩擦力。我们开发了一种高速,精确的计算方法,用于模拟特征层法计算瞬态层流中的摩擦。该方法包括将W.Zielke的加权函数近似为一阶滞后系统的脉冲响应之和。除特征方法外,通常不应用于其他计算方法。在本文中,我们提出了一种高速精确的频率相关摩擦计算方法在CIP方法中的应用。就离散时间和空间之间的关系而言,该方法比特性方法具有更高的灵活性。我们在单个,串联,分支和复杂管道中测量了瞬态响应。数值计算结果与实验结果吻合良好。

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