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Modelling of fluid power transmission systems

机译:流体动力传输系统建模

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摘要

The mathematical modelling of fluid power transmission systems involves solving a system of differential equations and addressing the problems generated by transient pressure propagation. The main difficulties in modelling pressurised, fluid pipelines arise from the complex interactions involving boundary conditions, reflections and non-linear behaviour. This paper presents a new method of modelling pipeline systems that provides an accurate transient response of the system incorporating a frequency-dependent fluid friction term. The modelling method employed is based upon distributed-lumped parameter modelling techniques which enable the inclusion of a wide variety of non-linear effects. The model comprises a distributed element representing the pressure and flow rate through out the length of the pipeline and a lumped element that represents the boundary conditions at the pipeline exit. The simulation results for the system are compared with experimental data validating thereby the analytical procedures proposed.
机译:流体动力传输系统的数学建模包括求解微分方程组并解决瞬态压力传播所产生的问题。对受压流体管道进行建模的主要困难来自复杂的相互作用,涉及边界条件,反射和非线性行为。本文提出了一种新的管道系统建模方法,该方法结合了频率相关的流体摩擦项,可为系统提供准确的瞬态响应。所采用的建模方法基于分布式集中参数建模技术,该技术能够包含各种非线性效应。该模型包括一个代表整个管道长度的压力和流量的分布式元素,以及一个代表管道出口边界条件的集总元素。将系统的仿真结果与实验数据进行比较,从而验证了所提出的分析程序。

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