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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Modeling Dynamic Response of Hydraulic Fluid Within Tapered Transmission Lines
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Modeling Dynamic Response of Hydraulic Fluid Within Tapered Transmission Lines

机译:锥形传输线内液压流体的动态响应

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This paper examines modeling of the laminar dynamic fluid responses within hydraulic transmission lines that have a tapered shape between the inlet and the outlet. There are excellent models available for fast simulation of pressure and flow dynamics within uniform lines; however, the established models for tapered lines either cannot be implemented in the time domain, are complex to implement, or have long simulation times. The enhanced transmission line method (TLM) structure is applied in this paper since it can be computed quickly in the time domain and has shown to accurately model the effects of frequency-dependent friction. This paper presents a method of optimizing the TLM weighting functions, minimizing the error between the TLM transmission matrix terms and a numerical ordinary differential equation (ODE) solution calculated using a boundary value solver. Optimizations have shown that using the TLM to model tapered lines can provide a fair approximation when compared in the frequency domain. Two-dimensional (2D) interpolation of a look-up table is possible allowing for quick selection of the optimized parameters. Further investigation into the effects of pipe wall elasticity and its inclusion into the TLM is also performed. Also, an experiment was performed to validate high frequency harmonic peaks present in the frequency response, which yielded acceptable results when compared to the theory, and the proposed tapered TLM. This model can be used in numerous applications where line dynamic effects must be accounted for, especially with digital hydraulic switched inertance converters where high frequencies are present.
机译:本文研究了层状动态流体响应的模型,其在入口和出口之间具有锥形的锥形。有很好的型号可用于在均匀线内快速模拟压力和流动动态;然而,锥形线的已建立的模型可以在时域中实现,以实现或具有长模拟时间。在本文中应用增强的传输线方法(TLM)结构,因为它可以在时域中快速计算,并显示精确地模拟频率相关摩擦的影响。本文介绍了一种优化TLM加权函数的方法,最小化了TLM传输矩阵术语与使用边值求解器计算的数值常微分方程(ODE)解决方案的误差。优化已经表明,在频域中比较时,使用TLM以模型锥形线可以提供公平的近似。可以允许快速选择优化参数的查找表的二维(2D)插值。还进行了进一步调查管壁弹性的影响及其夹杂物进入TLM。而且,进行了实验以验证频率响应中存在的高频谐波峰,其与理论相比,施加的锥形TLM呈现可接受的结果。该模型可用于许多应用程序,其中必须考虑线动态效果,特别是在存在高频的数字液压开关惰性转换器中。

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