首页> 外文会议>4th International Conference on Nanochannels, Microchannels and Minichannels 2006(ICNMM2006) pt.A >SIMULATION OF A LAYERED RESONATOR FOR A MICROFLUIDIC ULTRASONIC SEPARATOR
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SIMULATION OF A LAYERED RESONATOR FOR A MICROFLUIDIC ULTRASONIC SEPARATOR

机译:微流体超声分离器的层状谐振器的模拟

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This paper focuses on the simulation of a layered resonator for a microfluidic ultrasonic separator with a special emphasis on analysing the stored energy-frequency product in the micro-fluid chamber. Since the acoustic force acting on a small spherical particle in a standing wave in the cavity of an ultrasonic separator is proportional to the product of the energy density in the standing wave and the driving frequency, the energy-frequency product can be used as a prediction of the separation performance in an ultrasonic separator. The electro-acoustic characteristics of the resonator under different conditions are also investigated. In particular, the influence of the reflector thickness on the stored energy-frequency product of the layered resonator is examined. Furthermore, the acoustic pressure distribution in the fluid chamber of the ultrasonic separator is investigated in detail. Predicted results from simulations compare well with experimental measurements and show that the model can be used to predict the electro-acoustic characteristics and the separation performance.
机译:本文着重于微流体超声分离器的分层谐振器的仿真,尤其着重于分析微流体腔中存储的能量-频率乘积。由于超声波分离器腔体中驻波中作用在球形小颗粒上的声力与驻波中的能量密度与驱动频率的乘积成正比,因此该能量-频率乘积可用作预测超声波分离器的分离性能还研究了谐振器在不同条件下的电声特性。特别地,检查反射器厚度对分层谐振器的所存储的能量-频率乘积的影响。此外,详细研究了超声分离器的流体腔中的声压分布。模拟的预测结果与实验测量结果很好地比较,表明该模型可用于预测电声特性和分离性能。

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