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作 者:Longjie Wang Bin Zhou Chang Wan Ling Zhou
机构地区:[1]College of Mechanical and Electrical Engineering,Tarim University,Alar 843300,Xinjiang,China [2]Modern Agricultural Engineering Key Laboratory at Universities of Education Department of Xinjiang Uygur Autonomous Region,Alar 843300,Xinjiang,China [3]Xinjiang Production and Construction Corps(XPCC)Key Laboratory of Utilization and Equipment of Special Agricultural and Forestry Products in Southern Xinjiang,Alar 843300,Xinjiang,China
出 处:《International Journal of Agricultural and Biological Engineering》2024年第3期115-120,共6页国际农业与生物工程学报(英文)
基 金:financially supported by the Xinjiang Key Industry Innovation and Development Support Project(Grant No.2020DB003).
摘 要:To reduce the ditching resistance of a furrow opener during operation,single-factor and multiple-factor combinations were used to explore the influence of the furrow opener’s advance speed,blade opening angle,and width on the ditching resistance based on the discrete element method(DEM).A DEM simulation of the furrow opener was developed.Upon changing these influencing factors,the parameters with the least resistance to operation were identified.Furrow openers were fabricated according to the optimized results,and soil trench tests were carried out.Simulations and soil groove tests showed that the minimum ditching resistance was 58.54 N when the current advance speed was 4.47 m/s,the blade opening angle was 32.02°,and the furrow opener width was 51.45 mm.The error between the simulated value of the ditching resistance and the soil trench test was within 10%,and the trends of resistance change were essentially the same,indicating that it is feasible to optimize the structural parameters of a trench furrow opener using DEM.These research results can provide a reference for the parameter optimization of furrow openers.
关 键 词:furrow opener discrete element OPTIMIZATION ditching resistance
分 类 号:S22[农业科学—农业机械化工程]
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