首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >ADDED-MASS EFFECT IN MODELING OF CILIA-BASED (VIBRATING CANTILEVER-TYPE) DEVICES FOR MICROFLUIDIC SYSTEMS
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ADDED-MASS EFFECT IN MODELING OF CILIA-BASED (VIBRATING CANTILEVER-TYPE) DEVICES FOR MICROFLUIDIC SYSTEMS

机译:微流控系统中基于Cilia的(振动悬臂式)设备建模中的附加质量效应

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This article shows that the added mass due to fluid structure interaction significantly affects the vibrational dynamics of cilia-based (vibrating cantilever-type) devices for handling microano- scale fluid flows. Commonly, the hydrodynamic interaction between the cilia-based actuator and fluid is modeled as a Stokes drag force that is proportional to the velocity. Our main contribution is to show that such a drag effect cannot explain the substantial reduction in the resonant frequency of the cilia actuator operating in liquid when compared to the natural frequency of the cilia in air. It is shown that an added-mass approach can explain this reduction in the resonant frequency when operating cantilever-type devices in fluid. Thus, this article shows the need to model the added-mass effect, both, theoretically and by using experimental results.
机译:本文表明,由于流体结构相互作用而增加的质量显着影响了用于处理微/纳米级流体流的基于纤毛的(振动悬臂式)设备的振动动力学。通常,基于纤毛的致动器和流体之间的流体动力相互作用被建模为与速度成比例的斯托克斯拖曳力。我们的主要贡献是表明,与空气中纤毛的固有频率相比,这种阻力效应不能解释在液体中工作的纤毛致动器的共振频率的大幅降低。结果表明,在流体中操作悬臂式设备时,附加质量方法可以解释这种共振频率的降低。因此,本文表明有必要在理论上和通过使用实验结果来对附加质量效应进行建模。

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