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首页> 外文期刊>Journal of Sound and Vibration >On the slow dynamics of near-field acoustically levitated objects under High excitation frequencies
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On the slow dynamics of near-field acoustically levitated objects under High excitation frequencies

机译:高激励频率下近场声悬浮物体的慢动力学

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This paper introduces a simplified analytical model describing the governing dynamics of near-field acoustically levitated objects. The simplification converts the equation of motion coupled with the partial differential equation of a compressible fluid, into a compact, second order ordinary differential equation, where the local stiffness and damping are transparent. The simplified model allows one to more easily analyse and design near field acoustic levitation based systems, and it also helps to devise closed loop controller algorithms for such systems. Near field acoustic levitation employs fast ultrasonic vibrations of a driving surface and exploits the viscosity and the compressibility of a gaseous medium to achieve average, load carrying pressure. It is demonstrated that the slow dynamics dominates the transient behaviour, while the time scale associated with the fast, ultrasonic excitation has a small presence in the oscillations of the levitated object. Indeed, the present paper formulates the slow dynamics under an ultrasonic excitation without the need to explicitly consider the latter. The simplified model is compared with a numerical scheme based on Reynolds equation and with experiments, both showing reasonably good results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种简化的分析模型,该模型描述了近场声悬浮物体的控制动力学。简化后,将运动方程式与可压缩流体的偏微分方程式转换为紧凑的二阶常微分方程式,其中局部刚度和阻尼是透明的。简化的模型使人们可以更轻松地分析和设计基于近场声悬浮的系统,并且还有助于为此类系统设计闭环控制器算法。近场声悬浮利用驱动表面的快速超声波振动,并利用气态介质的粘度和可压缩性来获得平均的承载压力。结果表明,慢速动力学主导着瞬态行为,而与快速超声激发相关的时间尺度在悬浮物体的振荡中占很小的比例。实际上,本论文提出了在超声激发下的慢动力学,而无需明确考虑后者。将该简化模型与基于雷诺方程的数值方案和实验进行了比较,两者均显示出相当不错的结果。 (C)2015 Elsevier Ltd.保留所有权利。

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