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Model identification methodology for fluid-based inerters

机译:基于流体的惰性气体的模型识别方法

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Inerter is the mechanical dual of the capacitor via the force-current analogy. It has the property that the force across the terminals is proportional to their relative acceleration. Compared with flywheel-based inerters, fluid-based forms have advantages of improved durability, inherent damping and simplicity of design. In order to improve the understanding of the physical behaviour of this fluid-based device, especially caused by the hydraulic resistance and inertial effects in the external tube, this work proposes a comprehensive model identification methodology. Firstly, a modelling procedure is established, which allows the topological arrangement of the mechanical networks to be obtained by mapping the damping, inertance and stiffness effects directly to their respective hydraulic counterparts. Secondly, an experimental sequence is followed, which separates the identification of friction, stiffness and various damping effects. Furthermore, an experimental set-up is introduced, where two pressure gauges are used to accurately measure the pressure drop across the external tube. The theoretical models with improved confidence are obtained using the proposed methodology for a helical-tube fluid inerter prototype. The sources of remaining discrepancies are further analysed.
机译:通过力流类比,Inerter是电容器的机械对偶。具有跨端子的力与它们的相对加速度成比例的特性。与基于飞轮的惰性气体相比,基于流体的形式具有改进的耐用性,固有的阻尼和设计简单的优点。为了增进对这种基于流体的设备的物理行为的理解,尤其是由外管的水力阻力和惯性效应引起的这种行为,这项工作提出了一种全面的模型识别方法。首先,建立建模程序,该程序允许通过将阻尼,惯性和刚度效应直接映射到它们各自的液压对应项来获得机械网络的拓扑结构。其次,遵循实验顺序,该顺序将摩擦,刚度和各种阻尼效果的识别分开。此外,引入了一个实验装置,其中使用两个压力表来精确测量整个外管的压降。使用所提出的螺旋管流体惰化器原型方法,可以获得具有更高置信度的理论模型。剩余差异的来源将进一步分析。

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