The segregation of cement clinker particles in a mill-feeding hopper: PIV experiment and FEM modelling

被引:31
作者
Liu, Xinyu [1 ]
Zheng, Qijun [1 ]
Yang, Liuyimei [2 ]
Cai, Muyan [1 ]
Cheng, Guojian [1 ]
Yu, Aibing [1 ,3 ]
机构
[1] Monash Southeast Univ Joint Res Inst, Ctr Simulat & Modelling Particulate Syst, Suzhou, Peoples R China
[2] Chinese Acad Sci, Ganjiang Innovat Acad, Ganzhou, Peoples R China
[3] Monash Univ, Dept Chem Engn, ARC Res Hub Computat Particle Technol, Clayton, Vic 3800, Australia
关键词
Mill feeding hopper; Particle image velocimetry; Finite element method; Particle segregation; DISCRETE-ELEMENT; PARTICULATE SYSTEMS; IMAGE VELOCIMETRY; FILLING PRESSURES; GRANULAR FLOW; STEEL SILOS; SIMULATION; DISCHARGE; PATTERNS; FUNNEL;
D O I
10.1016/j.powtec.2023.118656
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The feeding hopper is frequently used in grinding cement clinker to ensure a stable and homogeneous feed of particles. However, due to the large variances in size, the clinker particles can segregate significantly and cause undesirable fluctuations in the subsequent grinding process. This work investigates the flow and segregation of particles in mill-feeding hoppers using the experimental PIV technique and the FEM simulation. The results demonstrate the different zones of fine and coarse particles, corresponding to the flow patterns of the hopper, are affected by the material parameters. Particularly, it is found that the geometric design of the hopper also has a great influence on the flow and segregation. An optimized hopper design using FEM is shown to effectively alleviate the segregation problem in the mill feeding hopper.
引用
收藏
页数:13
相关论文
共 47 条
[1]   How does internal angle of hoppers affect granular flow? Experimental studies using digital particle image velocimetry [J].
Albaraki, Saeed ;
Antony, S. Joseph .
POWDER TECHNOLOGY, 2014, 268 :253-260
[2]   Predicting discharge dynamics from a rectangular hopper using the discrete element method (DEM) [J].
Anand, Anshu ;
Curtis, Jennifer S. ;
Wassgren, Carl R. ;
Hancock, Bruno C. ;
Ketterhagen, William R. .
CHEMICAL ENGINEERING SCIENCE, 2008, 63 (24) :5821-5830
[3]  
[Anonymous], 2010, ABAQUS6 10 ANAL USER
[4]  
Bamigboye G.O., 2018, INT J CIV ENG TECHNO, P437
[5]   Prediction of segregation in funnel and mass flow discharge [J].
Bertuola, Davide ;
Volpato, Silvia ;
Canu, Paolo ;
Santomaso, Andrea C. .
CHEMICAL ENGINEERING SCIENCE, 2016, 150 :16-25
[6]   Silo discharge:: Measurement and simulation of dynamic behavior in bulk solids [J].
Böhrnsen, JU ;
Antes, H ;
Ostendorf, M ;
Schwedes, J .
CHEMICAL ENGINEERING & TECHNOLOGY, 2004, 27 (01) :71-76
[7]  
Eckart W, 2003, LN APP C M, V11, P195
[8]   A viscoplastic approach to model the flow of granular solids [J].
Elaskar, SA ;
Godoy, LA ;
Gray, DD ;
Stiles, JM .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2000, 37 (15) :2185-2214
[9]  
Fahrland T., 2013, CEM INT, V11, P64
[10]   Performance of PIV and PTV for granular flow measurements [J].
Gollin, Devis ;
Brevis, Wernher ;
Bowman, Elisabeth T. ;
Shepley, Paul .
GRANULAR MATTER, 2017, 19 (03)