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Reduced-order modelling of transient flow in transmission lines using distributed lumped parameters

机译:分布式集总参数的传输线路中瞬态流量的下降阶模型

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Developed in this paper are mathematical models capturing the one-dimensional underdamped dynamics of confined fluid flow within cylindrical transmission lines. The resulting models are rational transfer functions with coefficients that are explicit functions of the fluid properties and line geometry. Unlike a traditional lumped-parameter approach, the accuracy of the fluid resonant frequencies predicted by the proposed models is precise and not a function of transmission line axial discretisation. Therefore, model order (complexity) is solely a function of the number of desired modes, which in turn influences pressure and flow predictions. The results are applicable to both laminar and turbulent flow. To develop the models, a distributed lumped-parameter approach is employed. Specifically, a quasi-steady state friction approximation is used within the governing partial differential equations. The solution to the linearised ordinary differential equations produces three transcendent transfer functions that are approximated using finite-order rational transfer functions. The parameters of resulting transfer functions are then modified to capture the second-order effects. A fluid power design example using the proposed model is provided to illustrate the utility of these models.
机译:本文开发的是数学模型,捕获圆柱形传输线内的狭窄流体流动的一维欠压动态。由此产生的模型是具有系数的合理传递函数,其是流体特性和线几何形状的显式功能。与传统的集合参数方法不同,所提出的模型预测的流体谐振频率的精度是精确的,而不是传输线轴向离散的函数。因此,模型顺序(复杂性)仅是所需模式的数量的函数,这反过来影响压力和流量预测。结果适用于层流和湍流。要开发模型,采用了分布式集总参数方法。具体地,在控制部分微分方程内使用准稳态摩擦近似。线性化的常微分方程的解决方案产生了三个超越传递函数,其使用有限阶合理传输函数近似。然后修改产生的传递函数的参数以捕获二阶效应。提供了使用所提出的模型的流体功率设计示例以说明这些模型的效用。

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