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DISCRETE ELEMENT MODELING OF SOIL DISPLACEMENT RESULTING FROM HOE OPENERS

机译:锄头开启造成的土壤位移的离散元素建模

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Soil displacement is the most important performance indicator for seed openers, as it affects the uniformity of seeding depth. In this study, a hoe opener was modeled using Particle Flow Code in 3 Dimensions (PFC3D), a discrete element modeling software program. The objective was to simulate soil displacement in terms of soil throws. To validate the model, an air drill with hoe openers was tested in a field with clay soil at a working depth of 38 mm and travel speed of 8 km h(-1). Soil throw resulting from the hoe opener was measured. To calibrate the model, a virtual soil shear test was created within PFC3D, and the output soil shear torque was compared to the torque measured in the same field. The result showed that the calibrated effective modulus, a critical micro-parameter of model particles, was 5.692 x 10(7) Pa. With this calibrated value, the simulated soil throws agreed well with the measured throws, with a relative error of 15%. The model was used to compare different hoe opener designs: single-shoot spread, double-shoot side-band, double-shoot paired-row, and triple-shoot openers. Among all these openers, the side-band opener resulted in the least lateral soil throw, and the paired-row opener resulted in the lowest vertical soil throw but the highest lateral throw. The developed model was effective for examining the effects of opener geometry on soil displacement.
机译:土壤位移是种子开启者最重要的表现指标,因为它会影响播种深度的均匀性。在这项研究中,使用三维(PFC3D)的粒子流代码,一个离散元素建模软件程序建模锄头开启器。目的是在土壤抛出方面模拟土壤位移。为了验证该模型,在粘土土壤的场上测试带锄头开启器的空气钻,工作深度为38 mm,行进速度为8km H(-1)。测量由锄头开瓶器产生的土壤扔。为了校准模型,在PFC3D中产生虚拟土壤剪切测试,并将输出土剪切扭矩与在同一领域中测量的扭矩进行比较。结果表明,校准的有效模量,模型颗粒的关键微观参数为5.692×10(7)PA。通过这种校准值,模拟的土壤抛出良好的抛出,相对误差为15% 。该模型用于比较不同的锄头开启器设计:单拍涂抹,双射击侧带,双射线配对行和三射击开启器。在所有这些开启者中,侧带开瓶器导致最少的横向土壤投掷,配对排开启器导致最低的垂直土壤投掷,但横向投掷最高。开发的模型对检查开启器几何的影响有效。

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