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Theoretical studies of nanoparticle fluidizations

机译:纳米粒子流化的理论研究

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Different nanoparticle beds have been successfully fluidized in the form of agglomerates with the assistance of high superficial gas velocity,mechanical vibration, acoustical agitation, or magnet stirring by many researchers. The minimum fluidization velocities reported range from as low as 0.2 cm/s to as high as 6 cm/s. Some direct measurements of the size of the fluidized nanoparticle agglomerate have also been performed by a few researchers, showing several hundred micron nanoparticle agglomerates. However, until now most investigation of nanoparticle fluidizations focused on experimental studies. The mechanism of nanoparticle fluidization is not clear at all and still remains untouched. In this study, based on force balance on agglomerates, a parametric model has been developed to predict the fluidization behavior of nanoparticle beds. The minimum and maximum agglomerate size can be predicted using this model.
机译:许多研究人员借助高表观气体速度,机械振动,声学搅拌或磁力搅拌,成功地将不同的纳米颗粒床以团聚体形式流化。报告的最小流化速度范围从低至0.2 cm / s到高至6 cm / s。一些研究人员还对流化的纳米颗粒附聚物的尺寸进行了一些直接测量,显示出数百微米的纳米颗粒附聚物。然而,直到现在,大多数对纳米粒子流化的研究都集中在实验研究上。纳米粒子流态化的机制尚不清楚,仍未触及。在这项研究中,基于团聚体上的力平衡,已开发出一种参数模型来预测纳米颗粒床的流化行为。可以使用此模型预测最小和最大的团聚体尺寸。

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