Please wait a minute...
Chinese Journal of Engineering Design  2011, Vol. 18 Issue (6): 428-436    DOI:
    
The research on DEM method to design bulk material transfer system
 SONG  Wei-Gang, WANG  Tian-Fu
School of Mechanical Engineering and Automation, Northeastern University, Shenyang 110004,  China
Download: HTML     PDF(3715KB)
Export: BibTeX | EndNote (RIS)      

Abstract  Particulate material simulation technology can observe the motion condition of the bulk material, analyze the material's motion mechanism and the forces which act on the materials, it also can estimate the wear condition which means the remaining useful life. Besides, it can optimize the transfer system. Different calculation methods of bulk material transfer were compared; the steps of modeling and model checking using Discrete Element Method (DEM) method were built. Due to the problem of excessive computation time required by DEM calculations, the discrete element simulation was carried on in the condition of reducing shear modulus and increasing particle size. After comparing the experimental results and computing time of DEM with normal condition, it shows that the methods of reducing shear modulus and increasing particle size can reduce the time of DEM simulation on the premise of having no affection on the result. A simulation model established in EDEM software realized the visualization of material flow in transfer process. The effects of the material transfer in the straight line chute, polyline chute and the curved line chute are compared. Simulation results show that variable radius is better for material transfer and “U” type chute cross-section can reduce the misalignments in transferring the bulk material.

Key wordsbelt conveyor      bulk material transfer      DEM      chute     
Published: 28 December 2011
CLC:  TH 222  
Cite this article:

SONG Wei-Gang, WANG Tian-Fu. The research on DEM method to design bulk material transfer system. Chinese Journal of Engineering Design, 2011, 18(6): 428-436.

URL:

https://www.zjujournals.com/gcsjxb/     OR     https://www.zjujournals.com/gcsjxb/Y2011/V18/I6/428


散状物料转载系统设计DEM仿真方法的研究

颗粒仿真技术可以对散状物料的运动进行观察、机理分析、受力分析、磨损(寿命)估计和系统优化.比较了散状物料转载计算方法,给出了采用DEM方法的建模与模型检验的基本步骤.针对DEM计算方法存在所需计算时间过长的问题,实验比较了降低剪切模量和增大颗粒粒度等方法对DEM计算时间和实验结果的影响,结果表明,在不影响计算结果的前提下可通过降低剪切模量和增大颗粒粒度来缩短DEM仿真计算时间.利用EDEM软件实现了散料转载过程的可视化,比较分析了直线型溜槽、折线型溜槽和曲线型溜槽中物料转载效果.仿真表明:采用变曲率半径效果更好;U型溜槽截面能够减少物料不对中情况的发生.

关键词: 带式输送机,  散料转载,  离散单元方法,  溜槽 
[1] Qin LI,Yuwei LEI,Haoxiang SUN,Maolin DAI,Ke CHEN. Study on downhole flow field and chip removal performance of laser mechanical drill bit based on EDEM-Fluent coupling[J]. Chinese Journal of Engineering Design, 2023, 30(4): 521-530.
[2] XU Chang-feng, ZHOU You-hang, XIAO Jia-qi, HE Dong-ke, ZHAO Yu. Research on optimal process parameters of sepiolite spiral stirred mill[J]. Chinese Journal of Engineering Design, 2022, 29(1): 51-58.
[3] WU Guo-pei, YU Yin-quan, TU Wen-bing. Review of research on fault diagnosis of permanent magnet synchronous motor[J]. Chinese Journal of Engineering Design, 2021, 28(5): 548-558.
[4] ZHANG Pu, WANG Jun-feng, GAO Yi-cong, ZHANG Xue-jian. Innovative design of box elevator epidemic prevention function integrating AD and TRIZ[J]. Chinese Journal of Engineering Design, 2021, 28(3): 305-311.
[5] LUO Jin-wu, KUANG Yu-chun, ZHANG Rui, CHEN Hua, LIAO Wen-ling, LI Gang-jun. Research on hydraulic structure of PDC bit in horizontal well based on CFD-DEM coupling[J]. Chinese Journal of Engineering Design, 2020, 27(5): 636-644.
[6] ZHENG Ming-jun, YANG She, WU Wen-jiang, ZHAO Chen-lei. Parameter optimization of sand throwing plate of railway sand cleaning vehicle[J]. Chinese Journal of Engineering Design, 2020, 27(1): 87-93.
[7] WU Wen-jiang, WANG Zhen-xing, GAO Zhan-feng, GAO Jian-zhong, Lü Yan-jun. Simulation analysis and experimental study on stress state of sand-collecting shovel during sand-collecting process[J]. Chinese Journal of Engineering Design, 2019, 26(4): 490-496.
[8] WANG Yao, LI Shu-jun, ZHAO Wen-yu, MENG Wen-jun. Experimental and theoretical analysis of static and dynamic characteristic of linear motor used in belt conveyor[J]. Chinese Journal of Engineering Design, 2017, 24(3): 303-310.
[9] SI Guang-yao, WANG Kai, LI Wen-qiang, LI Yan, MOU Liang. Research on product demand analysis method based on Big Data and rough set[J]. Chinese Journal of Engineering Design, 2016, 23(6): 521-529.
[10] WANG Cheng-jun, ZHANG Tian-yu, LI Long, CHEN Jin-yan, MENG Xiang-rui. Study on screening efficiency of moist raw coal particles on 3-DOF hybrid vibrating screen[J]. Chinese Journal of Engineering Design, 2016, 23(3): 264-270.
[11] XIE Yu-Ming, QING Qi-Xiang, TANG Qin-Qing. Dynamically behavioral research of lunar soil drilling and sampling by DEM[J]. Chinese Journal of Engineering Design, 2013, 20(6): 476-481.
[12] YANG Qin, TANG Wei. The determination of the optimal clustering of customer demands for product family[J]. Chinese Journal of Engineering Design, 2013, 20(2): 97-101.
[13] SONG Wei-Gang, JIANG Tao. Research on power calculation method for belt conveyor and its problems in project application[J]. Chinese Journal of Engineering Design, 2008, 15(6): 448-456.
[14] WANG Dan, SONG Wei-Gang. Research on dynamic design method and imitation of belt conveyor with horizontal curves[J]. Chinese Journal of Engineering Design, 2005, 12(1): 28-34.
[15] SONG Wei-Gang, ZHAN Xin, WANG Yuan-Yuan. Research on comparison of drives in long belt conveyor[J]. Chinese Journal of Engineering Design, 2004, 11(6): 301-311.