Flow in an hourglass: particle friction and stiffness matter

被引:19
作者
Pongo, Tivadar [1 ,2 ]
Stiga, Viktoria [1 ]
Torok, Janos [3 ,4 ]
Levay, Sara [4 ]
Szabo, Balazs [1 ]
Stannarius, Ralf [5 ]
Cruz Hidalgo, Raul [2 ]
Borzsonyi, Tamas [1 ]
机构
[1] Wigner Res Ctr Phys, Inst Solid State Phys & Opt, POB 49, H-1525 Budapest, Hungary
[2] Univ Navarra, Fac Ciencias, Fis & Matemat Aplicada, Pamplona, Spain
[3] Budapest Univ Technol & Econ, MTA BME Morphodynam Res Grp, Budapest, Hungary
[4] Budapest Univ Technol & Econ, Dept Theoret Phys, Budapest, Hungary
[5] Otto von Guericke Univ, Inst Phys, Magdeburg, Germany
来源
NEW JOURNAL OF PHYSICS | 2021年 / 23卷 / 02期
基金
欧盟地平线“2020”;
关键词
granular flow; hopper flow; granular dynamics; granular materials;
D O I
10.1088/1367-2630/abddf5
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Granular flow out of a silo is studied experimentally and numerically. The time evolution of the discharge rate as well as the normal force (apparent weight) at the bottom of the container is monitored. We show that particle stiffness has a strong effect on the qualitative features of silo discharge. For deformable grains with a Young modulus of about Y-m approximate to 40 kPa in a silo with basal pressure of the order of 4 kPa, lowering the friction coefficient leads to a gradual change in the discharge curve: the flow rate becomes filling height dependent, it decreases during the discharge process. For hard grains with a Young modulus of about Y-m approximate to 500 MPa the flow rate is much less sensitive to the value of the friction coefficient. Using DEM data combined with a coarse-graining methodology allows us to compute all the relevant macroscopic fields, namely, linear momentum, density and stress tensors. The observed difference in the discharge in the low friction limit is connected to a strong difference in the pressure field: while for hard grains Janssen-screening is effective, leading to high vertical stress near the silo wall and small pressure above the orifice region, for deformable grains the pressure above the orifice is larger and gradually decreases during the discharge process. We have analyzed the momentum balance in the region of the orifice (near the location of the outlet) for the case of soft particles with low friction coefficient, and proposed a phenomenological formulation that predicts the linear decrease of the flow rate with decreasing filling height.
引用
收藏
页数:16
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