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小孔出料仓中形状各向异性颗粒的流动与堵塞。

Outflow and clogging of shape-anisotropic grains in hoppers with small apertures.

机构信息

Institute of Experimental Physics, Otto von Guericke University, 39106 Magdeburg, Germany.

Institute for Solid State Physics and Optics, Wigner Research Center for Physics, Hungarian Academy of Sciences, P. O. Box 49, H-1525 Budapest, Hungary.

出版信息

Soft Matter. 2017 Jan 4;13(2):402-414. doi: 10.1039/c6sm02374f.

Abstract

Outflow of granular material through a small orifice is a fundamental process in many industrial fields, for example in silo discharge, and in everyday's life. Most experimental studies of the dynamics have been performed so far with monodisperse disks in two-dimensional (2D) hoppers or spherical grains in 3D. We investigate this process for shape-anisotropic grains in 3D hoppers and discuss the role of size and shape parameters on avalanche statistics, clogging states, and mean flow velocities. It is shown that an increasing aspect ratio of the grains leads to lower flow rates and higher clogging probabilities compared to spherical grains. On the other hand, the number of grains forming the clog is larger for elongated grains of comparable volumes, and the long axis of these blocking grains is preferentially aligned towards the center of the orifice. We find a qualitative transition in the hopper discharge behavior for aspect ratios larger than ≈6. At still higher aspect ratios >8-12, the outflowing material leaves long vertical holes in the hopper that penetrate the complete granular bed. This changes the discharge characteristics qualitatively.

摘要

颗粒物质从小孔流出是许多工业领域的基本过程,例如料仓卸料和日常生活中。迄今为止,大多数关于动力学的实验研究都是在二维(2D)料斗中用单分散盘或在 3D 中用球形颗粒进行的。我们研究了 3D 料斗中形状各向异性颗粒的这一过程,并讨论了尺寸和形状参数对雪崩统计、堵塞状态和平均流速的影响。结果表明,与球形颗粒相比,颗粒的纵横比越大,流速越低,堵塞概率越高。另一方面,对于具有可比体积的拉长颗粒,形成堵塞的颗粒数量更多,并且这些堵塞颗粒的长轴优先沿孔口的中心对齐。我们发现,当纵横比大于约 6 时,料斗卸料行为会发生定性转变。在更高的纵横比 >8-12 时,流出的物料在料斗中留下贯穿整个颗粒床的长垂直孔,这会定性地改变卸料特性。

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