Calibration of Simulation Parameters of Mung Bean Seeds Using Discrete Element Method and Verification of Seed-metering Test

被引:0
|
作者
Zhang S. [1 ]
Zhang R. [1 ]
Chen T. [1 ]
Fu J. [1 ,2 ]
Yuan H. [1 ,2 ]
机构
[1] College of Biological and Agricultural Engineering, Jilin University, Changchun
[2] Key Laboratory of Bionics Engineering, Ministry of Education, Jilin University, Changchun
关键词
Calibration; Discrete element; Mung bean; Seeding test; Simulation parameter;
D O I
10.6041/j.issn.1000-1298.2022.03.007
中图分类号
学科分类号
摘要
In order to improve the accuracy of the simulation parameters used in the discrete element simulation test of mung bean precision metering process, and further optimize the metering structure, based on the intrinsic parameters of mung bean seeds, the Hertz Mindlin with bonding model was used to establish the seed simulation model, the simulation parameters between the mung bean seeds and the contact material (plexiglass plate, Somos8000 resin) were calibrated by the free fall collision method, inclined sliding method, and inclined rolling method, respectively. The statistical results showed the collision recovery coefficient, static friction coefficient and rolling friction coefficient between mung bean and plexiglass were 0.445, 0.458 and 0.036, respectively; the collision recovery coefficient, static friction coefficient, and rolling friction coefficient between mung bean and Somos8000 resin were 0.434, 0.556 and 0.049, respectively. Steep climbing test, three-factor and five-level horizontal rotation combinations were designed and tested respectively, involving factors of contact parameters between seeds, and the indices of the relative error between the measured accumulation angle and the simulated accumulation angle. Then, the minimum relative error was taken as the optimization objective, and the test data were optimized and analyzed, the collision recovery coefficient, static friction coefficient, and rolling friction coefficient between mung bean seeds were 0.3, 0.23 and 0.03, respectively. Seeding verification tests were carried out on the calibration results, the statistical results showed that the maximum relative error between the leakage rate of the simulation test and the missing rate of the bench test was 4.71%, the maximum relative error between the reabsorption rate and the multiple rate was 4.94%, and the maximum relative error between the single particle rate and the qualified rate was 0.98%, which proved that the calibration results were reliable. It can provide important reference significance for the design and simulation optimization of mung bean precision metering device. © 2022, Chinese Society of Agricultural Machinery. All right reserved.
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页码:71 / 79
页数:8
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共 26 条
  • [11] MARTIN C L, BOUVARD D, SHIMA S., Study of particle rearrangement during powder compaction by the discrete element method, Journal of the Mechanics and Physics of Solids, 51, 4, pp. 667-693, (2003)
  • [12] XU Yong, LI Hongyan, HUANG Wenbin, Modeling and methodological strategy of discrete element method simulation for tillage soil dynamics, Transactions of the CSAE, 19, 2, pp. 34-38, (2003)
  • [13] ZHANG Rui, HAN Dianlei, JI Qiaoli, Et al., Calibration methods of sandy soil parameters in simulation of discrete element method, Transactions of the Chinese Society for Agricultural Machinery, 48, 3, pp. 49-56, (2017)
  • [14] CUNHA R N, SANTOS K G, LIMA R N, Et al., Repose angle of monoparticles and binary mixture: an experimental and simulation study, Powder Technology, 303, pp. 203-211, (2016)
  • [15] WEI H, NIE H, LI Y, Et al., Measurement and simulation validation of DEM parameters of pellet, sinter and coke particles, Powder Technology, 364, pp. 593-603, (2020)
  • [16] COETZEE C J, LOMBARD S G., The destemming of grapes: experiments and discrete element modelling, Biosystems Engineering, 114, 3, pp. 232-248, (2013)
  • [17] WANG X, YU J, LV F, Et al., A multi-sphere based modelling method for maize grain assemblies, Advanced Powder Technology, 28, 2, pp. 584-595, (2017)
  • [18] ZENG Zhiwei, MA Xu, CAO Xiulong, Et al., Critical review of applications of discrete element method in agricultural engineering, Transactions of the Chinese Society for Agricultural Machinery, 52, 4, pp. 1-20, (2021)
  • [19] WANG Yunxia, LIANG Zhijie, ZHANG Dongxing, Et al., Calibration method of contact characteristic parameters for corn seeds based on EDEM, Transactions of the CSAE, 32, 22, pp. 36-42, (2016)
  • [20] LU Fangyuan, MA Xu, TAN Suiyan, Et al., Simulative calibration and experiment on main contact parameters of discrete elements for rice bud seeds, Transactions of the Chinese Society for Agricultural Machinery, 49, 2, pp. 93-99, (2018)