EFFECT OF TINE FURROW OPENER ON SOIL MOVEMENT LAWS USING THE DISCRETE ELEMENT METHOD AND SOIL BIN STUDY
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Xianliang Wang | Hui Li | Chengyou Song | Xiangcai Zhang | Yuchun Lv | Yonggang Li | Zhongcai Wei | Xiupei Cheng
[1] Wei Wang,et al. SIMULATION OPTIMIZATION OF CONVEYING AND SOIL-REMOVING DEVICE FOR STRAW PICKING AND PELLETIZING MACHINERY , 2022, INMATEH Agricultural Engineering.
[2] Decong Zheng,et al. EXPERIMENTAL STUDY ON THE EFFECTS OF DIFFERENT PRESSURES AND SOWING DEPTHS ON THE GROWTH CHARACTERISTICS OF OAT UNDER DRY FARMING CONDITIONS , 2022, INMATEH Agricultural Engineering.
[3] P. Zhang,et al. PARAMETRIC CALIBRATION OF COTTON STRAW PARAMETERS IN XINJIANG BASED ON DISCRETE ELEMENTS , 2022, INMATEH Agricultural Engineering.
[4] Wenzheng Liu,et al. DESIGN AND APPLICATION OF A TEST BENCH FOR ROTATION TYPE ANTI-BLOCKING DEVICE OF NO-MINIMUM TILL SEEDER , 2022, INMATEH Agricultural Engineering.
[5] Weiwei Wang,et al. SIMULATIONS AND EXPERIMENTS OF THE SEEDBED STRAW AND SOIL DISTURBANCE AS AFFECTED BY THE STRIP-TILLAGE OF ROWCLEANER (DEM) , 2022, INMATEH Agricultural Engineering.
[6] Decheng Wang,et al. DESIGN AND EXPERIMENT OF A COMBINED ROOT-CUTTING AND DITCHING DEVICE , 2022, INMATEH Agricultural Engineering.
[7] Shuqi Shang,et al. PARAMETER CALIBRATION OF DISCRETE ELEMENT SIMULATION MODEL OF WHEAT STRAW-SOIL MIXTURE IN HUANG HUAI HAI PRODUCTION AREA , 2022, INMATEH Agricultural Engineering.
[8] 武春梅. 分析绿色农业种植技术的推广及应用 , 2022, 工程管理与技术探讨.
[9] Xiaoshuan Zhang,et al. PARAMETER OPTIMIZATION AND EXPERIMENT OF SLIDER-HOLE-WHEEL SEED-METERING DEVICE BASED ON DISCRETE ELEMENT METHOD , 2021, INMATEH Agricultural Engineering.
[10] Yinuo Zhang,et al. DEVELOPMENT AND TEST OF CORN STRAW KNEADING AND CONVEYING DEVICE , 2021, INMATEH Agricultural Engineering.
[11] J. Zheng,et al. DESIGN AND PARAMETER OPTIMIZATION OF LAYERED FERTILIZATION OPENER FOR WHEAT, BASED ON EDEM , 2021, INMATEH Agricultural Engineering.
[12] Wei Li,et al. DESIGN AND TEST OF NEGATIVE PRESSURE CHAMBER ROTARY BUCKWHEAT SEED METERING DEVICE , 2021, INMATEH Agricultural Engineering.
[13] James B. Barr,et al. Bentleg furrow opener performance analysis using the discrete element method , 2020 .
[14] Chris Saunders,et al. Discrete element modelling of tillage forces and soil movement of a one-third scale mouldboard plough , 2017 .
[15] A. Singh,et al. Effect of Furrow Opener Design, Furrow Depth, Operating Speed on Soil Characteristics, Draft and Germination of Sugarcane , 2017, Sugar Tech.
[16] Chris Saunders,et al. Defining the effect of sweep tillage tool cutting edge geometry on tillage forces using 3D discrete element modelling , 2015 .
[17] Jan Adamowski,et al. Finite element simulation of soil failure patterns under soil bin and field testing conditions , 2015 .
[18] Chris Saunders,et al. 3D DEM tillage simulation: Validation of a hysteretic spring (plastic) contact model for a sweep tool operating in a cohesionless soil , 2014 .
[19] John M. Fielke,et al. Furrow parameters in rotary strip-tillage: Effect of blade geometry and rotary speed , 2014 .
[20] 李力,et al. 基于离散元法的球磨机介质运动仿真分析 The Simulation and Analysis on Medium Motion in Ball Mill by Discrete Element Method , 2013 .
[21] Tavs Nyord,et al. A discrete element model for soil–sweep interaction in three different soils , 2013 .
[22] 周国模 Zhou Guomo,et al. Effect of fertilization on the dynamic of soil N_2O fluxes in Chinese chestnut stands , 2013 .
[23] J. Mak,et al. Determining parameters of a discrete element model for soil–tool interaction , 2012 .
[24] Luquan Ren,et al. Effects of biomimetic surface designs on furrow opener performance , 2009 .
[25] Robert Hamilton,et al. Simulation of soil–blade interaction for sandy soil using advanced 3D finite element analysis , 2004 .
[26] John M. Fielke,et al. Finite element modelling of the interaction of the cutting edge of tillage implements with soil , 1999 .