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首页> 外文期刊>Journal of Sound and Vibration >Particle sizing using passive ultrasonic measurement of particle-wall impact vibrations
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Particle sizing using passive ultrasonic measurement of particle-wall impact vibrations

机译:使用无源超声测量颗粒壁撞击振动的颗粒尺寸

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In continuously stirred reactor vessels the non-invasive recovery of the particle size could be used to monitor the reaction process. Experimental and numerical investigations have shown empirically that the frequency of the peak vibration response arising from the particle-wall impact is inversely proportional to the particle size. The passive monitoring of these impact vibrations using an ultrasonic transducer has the potential therefore of non-invasively recovering the particle size. However, the vessel geometry, fluid loading, variable impact position and velocity, stirrer and transducer effects, and noise levels make this problem very complex. There are a large number of system parameters and this makes empirical derivations of cause and effects extremely difficult. The first objective of this paper is to derive an analytical expression for the vibrations arising from a spherical particle impacting a circular plate. Using a series expansion in terms of the plate loss parameter, an expression for the frequency of the peak pressure in terms of the system parameters is derived. In particular, its explicit dependency on the impacting particle size and the impact velocity is found. The inverse problem of recovering the particle size from the experimental data is then investigated. A set of experiments are described where the impact vibrations are recorded using an ultrasonic transducer attached to the rear of a thin plate. The results show that it is possible to recover the particle size using this approach. Data from a second set of experiments, involving multi-particle impacts with a vessel wall in a continuously stirred reactor, are then used. The inverse problem of recovering the particle size from the vibration spectrum was then investigated with encouraging results. (c) 2008 Elsevier Ltd. All rights reserved.
机译:在连续搅拌的反应器容器中,粒径的无创恢复可用于监测反应过程。实验和数值研究从经验上表明,由颗粒壁撞击产生的峰值振动响应的频率与颗粒尺寸成反比。因此,使用超声换能器对这些冲击振动进行被动监控可能会无创地恢复粒径。但是,容器的几何形状,流体载荷,可变的冲击位置和速度,搅拌器和换能器的影响以及噪声水平使这个问题变得非常复杂。系统参数很多,这使得因果关系的经验推导极为困难。本文的第一个目的是为球形颗粒撞击圆形板而产生的振动导出解析表达式。使用根据板损失参数的级数展开,得出根据系统参数的峰值压力频率的表达式。特别地,发现了其对冲击粒度和冲击速度的明确依赖性。然后研究了从实验数据中恢复粒度的反问题。描述了一组实验,其中使用附接到薄板背面的超声换能器记录冲击振动。结果表明,使用这种方法可以恢复粒径。然后使用来自第二组实验的数据,该数据涉及在连续搅拌的反应器中容器壁受到多颗粒撞击。然后研究了从振动光谱中恢复粒径的反问题,得到了令人鼓舞的结果。 (c)2008 Elsevier Ltd.保留所有权利。

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