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Axial segregation in bubbling gas-fluidized beds with Gaussian and lognormal distributions of Geldart Group B particles

机译:鼓泡气体流化床中的轴向偏析与高斯分布和Geldart B组颗粒的对数正态分布

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摘要

Bubbling, gas-fluidized bed experiments involving Geldart Group B particles with continuous-size distributions have been carried out. Sand of various widths of Gaussian or lognormal distributions were completely fluidized, then axial concentration profiles were obtained from frozen-bed sectioning. Similar to previous works on binary systems, results show that mean particle diameter decreases with increasing bed height, and that wider Gaussian distributions show increased segregation extents. Surprisingly, however, lognormal distributions exhibit a nonmonotonic segregation trend with respect to distribution widths. In addition, the shape of the local-size distribution is largely preserved with respect to that of the overall distribution. These findings on the nature of local-size distribution provide experimental confirmation of previous results for granular and gas-solid simulations. Lastly, an interesting observation is that although monodisperse Geldart Group D particles cannot be completely fluidized, their presence in lognormal distributions investigated still results in complete fluidization of all particles. © 2010 American Institute of Chemical Engineers AIChE J, 2010
机译:已经进行了鼓泡,流化床实验,涉及具有连续尺寸分布的Geldart B组颗粒。将各种宽度的高斯或对数正态分布的沙子完全流化,然后从冷冻床切片中获得轴向浓度分布。与先前对二元系统的研究相似,结果表明,平均粒径随床层高度的增加而减小,而较宽的高斯分布则表明偏析程度增加。然而,令人惊讶的是,对数正态分布相对于分布宽度表现出非单调的偏析趋势。另外,局部大小分布的形状相对于整体分布的形状被很大程度上保留。这些关于局部尺寸分布性质的发现为颗粒和气固模拟的先前结果提供了实验确认。最后,一个有趣的观察结果是,尽管单分散的Geldart D组颗粒无法完全流化,但它们以对数正态分布进行研究仍导致所有颗粒完全流化。 ©2010美国化学工程师学会AIChE J,2010

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