Size separation in vibrated granular matter

被引:272
作者
Kudrolli, A [1 ]
机构
[1] Clark Univ, Dept Phys, Worcester, MA 01610 USA
基金
美国国家科学基金会;
关键词
D O I
10.1088/0034-4885/67/3/R01
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We review recent developments in size separation in vibrated granular materials. Motivated by a need in industry to handle granular materials efficiently and a desire to make fundamental advances in non-equilibrium physics, experimental and theoretical investigations have shown size separation to be a complex phenomenon. Large particles in a vibrated granular system normally rise to the top. However, they may also sink to the bottom or show other patterns, depending on subtle variations in physical conditions. While size ratio is a dominant factor, particle-specific properties such as density, inelasticity and friction can play an important role. The nature of the energy input, boundary conditions and interstitial air have also been shown to be significant factors in determining spatial distributions. The presence of convection can enhance mixing or lead to size separation. Experimental techniques including direct visualization and magnetic resonance imaging are being used to investigate these properties. Molecular dynamics and Monte Carlo simulation techniques have been developed to probe size separation. Analytical methods such as kinetic theory are being used to study the interplay between particle size and density in the vibro-fluidized regime, and geometric models have. been proposed to describe size separation for deep beds. Besides discussing these studies, we will also review the impact of inelastic collisions and friction on the density and velocity distributions to gain a deeper appreciation of the non-equilibrium nature of the system. While a substantial number of studies have been performed, considerable work is still required to achieve a firm description of the phenomena.
引用
收藏
页码:209 / 247
页数:39
相关论文
共 117 条
  • [1] OBSERVATION OF PARTICLE SEGREGATION IN VIBRATED GRANULAR SYSTEMS
    AHMAD, K
    SMALLEY, IJ
    [J]. POWDER TECHNOLOGY, 1973, 8 (1-2) : 69 - 75
  • [2] Segregation in granular matter under horizontal swirling excitation -: art. no. 041305
    Aumaître, S
    Kruelle, CA
    Rehberg, I
    [J]. PHYSICAL REVIEW E, 2001, 64 (04): : 4 - 413054
  • [3] Driven granular gases with gravity
    [J]. Baldassarri, A., 2001, American Institute of Physics Inc. (64):
  • [4] 3-DIMENSIONAL MODEL FOR PARTICLE-SIZE SEGREGATION BY SHAKING - COMMENT
    BARKER, GC
    MEHTA, A
    GRIMSON, MJ
    [J]. PHYSICAL REVIEW LETTERS, 1993, 70 (14) : 2194 - 2194
  • [5] Bates L., 1997, User Guide to Segregation
  • [6] Slow relaxation in granular compaction
    Ben-Naim, E
    Knight, JB
    Nowak, ER
    Jaeger, HM
    Nagel, SR
    [J]. PHYSICA D, 1998, 123 (1-4): : 380 - 385
  • [7] Collision statistics of driven granular materials
    Blair, DL
    Kudrolli, A
    [J]. PHYSICAL REVIEW E, 2003, 67 (04): : 12
  • [8] Velocity correlations in dense granular gases
    Blair, DL
    Kudrolli, A
    [J]. PHYSICAL REVIEW E, 2001, 64 (05): : 4 - 050301
  • [9] BLAIR DL, 2003, PHYS REV E
  • [10] BLAIR DL, 2003, THESIS CLARK U