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Discrete Element Modeling of Seed Metering as Affected by Roller Speed and Damping Coefficient

机译:滚子速度和阻尼系数的种子计量离散元素建模

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摘要

The development of highly efficient seed metering is required to meet the demands of modern seeding equipment. The discrete element method (DEM) was used to simulate metering of seeds with a fluted roller meter. This approach was chosen due to its capability to accurately represent granular material flow. The contact model selected for the DEM simulation was the linear rolling resistance model. Angle of repose experimental tests and simulations were performed to calibrate the rolling friction coefficient for peas. The calibrated value for the rolling friction coefficient was 0.016. A 192 mm cross-section of an air cart seed roller and housing was defined as the domain of the simulation. Sensitivity analysis showed that simulated mass flow rates werenot sensitive to the selected damping coefficients (0.2, 0.5, and 0.8). Sensitivity indicator values varied between -0.049 and 0,088 for the range of damping coefficients and roller speeds studied. The simulated geometry of the seed meter and housing resulted in a steady flow of seeds, with discharged mass increasing linearly. The simulated mass flow rates were 34.0, 72.3, 110.4, 147.3, and 182.0 g s~(-1) for roller speeds of 10, 20, 30, 40, and 50 rpm, respectively. An experiment was performed to validate the simulation results. The predicted mass flow rate values of the simulation were within lOg s~(-1) of the experimental results, with the largest relative error being 16.5%.
机译:需要高效的种子计量的发展,以满足现代播种设备的需求。采用离散元素法(DEM)模拟用凹槽辊表进行种子的计量。由于其准确代表颗粒材料流动的能力而选择这种方法。用于DEM仿真所选择的接触型号是线性滚动电阻模型。进行休息实验测试和模拟的角度,以校准豌豆的滚动摩擦系数。轧制摩擦系数的校准值为0.016。机箱籽辊和壳体的192毫米横截面被定义为模拟结构域。灵敏度分析表明,模拟质量流量对所选择的阻尼系数敏感的质量流量率(0.2,0.5和0.8)敏感。对于所研究的阻尼系数和滚轮速度,灵敏度指示值在-0.049和0,088之间变化。种子表和外壳的模拟几何形状导致种子稳定流动,具有线性的放电质量增加。模拟质量流量分别为34.0,72.3,110.4,147.3和182.0g S〜(-1),分别为10,20,30,40和50rpm。进行实验以验证仿真结果。仿真的预测质量流量值在实验结果的Log S〜(-1)内,最大的相对误差为16.5%。

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