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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Self-organized phase segregation in a driven flow of dissimilar particles mixtures
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Self-organized phase segregation in a driven flow of dissimilar particles mixtures

机译:异质颗粒混合物驱动流中的自组织相分离

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Self-organized patterns in an immiscible fluid mixture of dissimilar particles driven from a source at the bottom are examined as a function of hydrostatic pressure bias by a Monte Carlo computer simulation. As the upward pressure bias competes with sedimentation due to gravity, a multi-phase system emerges: a dissociating solid phase from the source is separated from a migrating gas phase towards the top by an interface of mixed (bicontinuous) phase. Scaling of solid-to-gas phase with the altitude is nonuniversal and depends on both the range of the height/depth and the magnitude of the pressure bias. Onset of phase separation and layering is pronounced at low bias range. [References: 23]
机译:通过蒙特卡洛计算机仿真,研究了从底部源头驱动的不同颗粒的不混溶流体混合物中的自组织模式与静水压力偏差的关系。由于重力作用,向上的压力偏置与沉积物竞争,因此出现了多相系统:从源中分离出的固相通过混合(双连续)相的界面与向顶部迁移的气相分离。固-气随高度的缩放比例是普遍的,并且取决于高度/深度的范围和压力偏差的大小。在低偏压范围内明显发生相分离和分层。 [参考:23]

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