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Non-linear friction modelling and simulation of long pneumatic transmission lines

机译:长输气管道的非线性摩擦建模与仿真

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Dynamic modelling and numerical implementation strategies for fluid transmission lines have been studied thoroughly, mainly for the application in hydraulic pipeline networks. Recent interest in energy efficiency has seen a resurgence of this field for compressed air networks, with impact on manufacturing processes, simulation of pneumatic drive components, and other theoretical analysis applications. The effects of long tubes connecting system components are often neglected to increase computational speed and reduce model size. This document highlights existing modelling approaches from practice as well as from fluid dynamic theory. Existing approaches for hydraulic transmission lines are adapted to their use for pneumatic tubes. A low-order model is derived capable to predict the transient behaviour of pressure and mass flow rate distribution within the tube. The model accounts for non-linear turbulent flow conditions, and is designed to be compatible with signal-flow simulation programmes, increasing its usability in large-scale industrial settings. It is numerically well conditioned, and all parameters are determined by physical or empirical relationships. Both its transient and quasi-stationary behaviour are validated against experimental results.
机译:对流体传输线的动力学建模和数值实现策略进行了深入研究,主要用于液压管道网络中。最近对能源效率的关注使压缩空气网络领域重新兴起,从而影响了制造工艺,气动驱动部件的仿真以及其他理论分析应用。通常忽略了连接系统组件的长管的影响,以提高计算速度并减小模型大小。本文档重点介绍了来自实践以及流体动力学理论的现有建模方法。液压传输线的现有方法适合于它们在气动管中的使用。导出了能够预测管内压力和质量流量分布的瞬态行为的低阶模型。该模型考虑了非线性湍流条件,并被设计为与信号流仿真程序兼容,从而增加了其在大规模工业环境中的可用性。它的数值条件良好,并且所有参数均由物理或经验关系确定。相对于实验结果验证了其瞬态和准平稳行为。

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