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首页> 外文期刊>AIChE Journal >MEASUREMENT OF ULTRASONIC FORCES FOR PARTICLE-LIQUID SEPARATIONS
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MEASUREMENT OF ULTRASONIC FORCES FOR PARTICLE-LIQUID SEPARATIONS

机译:颗粒分离的超声力测量

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摘要

The magnitude and direction of the ultrasonic radiation forces that act on individual particles in a standing-wave field were determined using a microscope-based imaging system. The forces are calculated from measured particle velocities assuming that the drag force, given by Stokes' law, is exactly counterbalanced by the imposed ultrasonic forces. The axial primary radiation force was found to vary sinusoidally with axial position and to be proportional to the local acoustic energy density, as predicted by theory. The magnitude of the transverse primary force was determined by two independent methods to be about 100-fold weaker than the axial force. Separation concepts exploiting the transverse force for cell retention have been successful despite the great disparity in magnitude between the axial and transverse-force components. This may be explained by the reduced hydrodynamic forces on aggregated particles in transverse flow due to their alignment in the sound field. [References: 31]
机译:使用基于显微镜的成像系统确定作用在驻波场中各个粒子上的超声波辐射力的大小和方向。这些力是从测得的粒子速度计算得出的,假设斯托克斯定律给出的阻力是由施加的超声波力精确抵消的。如理论所预测的,发现轴向主要辐射力随轴向位置呈正弦变化,并且与局部声能密度成比例。横向主力的大小通过两种独立的方法确定,比轴向力弱约100倍。尽管轴向力和横向力分量之间存在巨大差异,但利用横向力进行细胞保留的分离概念还是成功的。这可以解释为由于横向流中聚集颗粒在声场中的排列而对聚集颗粒产生的减小的流体动力。 [参考:31]

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