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Fluidization of fine particles in a sound field and identification of group C/A particles using acoustic waves

机译:细颗粒在声场中的流化和使用声波识别C / A组颗粒

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摘要

Effects of sound field on the fluidization of fine particles have been comprehensively examined by using fine powders(4.8-65 mum average in size)including Al_2O_3,TiO_2,glass beads and FCC catalyst.It is found that the fluidization quality of fine particles can be enhanced with the assistance of a sound field,resulting in higher pressure drops and a lower mu_(mf).The effect of sound on the fluidization of fine particles is strongly dependent on the particle properties(Qeldart type and particle size)as well as the parameters of the sound field such as sound pressure level(or intensity)and frequency.Given a fixed sound frequency,the effect becomes more significant at a higher sound pressure level.For the present sound-aided fluidized bed system,there is a resonant frequency at about 100-110 Hz,at which the effectiveness of the sound wave in improving fluidization of fine particles is most remarkable.In addition,based on the different attenuation features of sonic waves in the gas-solid suspension of group C and A particles,a novel acoustic method is explored to distinguish group C from group A particles.
机译:通过使用Al_2O_3,TiO_2,玻璃微珠和FCC催化剂等平均粒径为4.8-65μm的细粉,全面研究了声场对细颗粒流态化的影响。在声场的帮助下增强,导致更高的压降和更低的mu_(mf)。声音对细颗粒流态化的影响在很大程度上取决于颗粒性质(Qeldart类型和粒径)以及声场的参数,如声压级(或强度)和频率。给定一个固定的声频,在更高的声压级下效果会变得更加明显。在大约100-110 Hz的频率下,声波在改善细粒流化方面的效果最为显着。此外,基于声波在气固两极中的不同衰减特性结合了C和A组颗粒,探索了一种新的声学方法来区分C组和A组颗粒。

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