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Numerical analysis and laboratory testing of seed spacing uniformity performance for vacuum-cylinder precision seeder

机译:真空缸精密播种机种子间距均匀度性能的数值分析与室内试验

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The performance of a vacuum-cylinder seeder for the precision sowing of rape seeds was investigated. For releasing seeds from nozzles smoothly, a positive differential pressure was applied to the seed. The forces acting on the seeds in free flight were calculated using the computational fluid dynamics (CFD) software Fluent. Using the differential equation for seed motion, seeds falling trajectories using different working parameters were numerically determined.A high-speed camera system mounted on a laboratory seeder test-rig was used to record the motion of seeds. A mean shift algorithm for tracking seeds was used. The horizontal displacement x and the fall time t(f) of seeds predicted by the numerical analysis and measured by the high-speed camera system were compared. The results indicated that the relative errors of x and t(f) were < 5.5% and 6.5%, respectively, indicating good agreement. Based on the analysis of seeds falling trajectories, it was found that the variations of positive differential pressure Delta p and release angle theta had significant effects on seeding uniformity. In order to analyse their effects on horizontal displacement, a coefficient of positive differential pressure variation chi(p) and coefficient of sowing angle variation chi(theta) were proposed and their values calculated. Calculations indicated that the optimum levels for Delta p and theta for the precision seeding of rape seeds were in the range of 1-2 kPa and from -10 to 0 degrees, respectively. Experiments were carried out on the vacuum-cylinder precision seeder test-rig and the results showed that the average seed spacing interval error reached the minimum at Delta p = 1.5 kPa and theta = -5 degrees and that the error increased almost linearly with increasing of cylinder rotational speed. (c) 2010 IAgrE
机译:研究了真空缸式播种机对油菜种子精密播种的性能。为了从喷嘴平稳地释放种子,对种子施加了正压差。使用计算流体动力学(CFD)软件Fluent计算自由飞行中作用在种子上的力。使用用于种子运动的微分方程,数值确定了使用不同工作参数的种子下落轨迹。使用安装在实验室播种机试验台上的高速摄像系统记录种子的运动。使用了用于跟踪种子的均值漂移算法。比较了通过数值分析预测并通过高速相机系统测量的种子的水平位移x和下降时间t(f)。结果表明,x和t(f)的相对误差分别<5.5%和6.5%,表明一致性良好。通过对种子落下轨迹的分析,发现正压差Δp和释放角theta的变化对播种均匀度有重要影响。为了分析它们对水平位移的影响,提出了正压差变化系数chi(p)和播种角变化系数chi(θ)并计算了它们的值。计算表明,对于油菜种子的精确播种,Δp和theta的最佳水平分别在1-2 kPa和-10至0度的范围内。在真空缸精密播种机试验台上进行了实验,结果表明,平均种子间隔间隔误差在Δp = 1.5 kPa和theta = -5度时达到最小,并且误差随着L的增加而线性增加。气缸转速。 (c)2010年

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