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Modeling the interaction of soil and a vibrating subsoiler using the discrete element method

机译:采用离散元素法对土壤的相互作用和振动底阱进行建模

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A vibrating subsoiler can effectively reduce the draft force compared to a rigid one. Several theoretical and experimental methods have been developed to study the interaction of soil and vibrating tools, enabling the exploration of the mechanism of a vibrating subsoiler to reduce the draft force. However, these methods are unable to predict the dynamic force of tools and soil behavior because of nonlinear soil properties. This paper employs the discrete element method (DEM) to simulate vibrating tillage. The aim is to clearly understand the dynamic force of vibrating tools and soil behavior. Three different types of representative vibrating subsoilers and one rigid one were selected for this study. These subsoilers varied in their tines and vibrating structures. The DEM model of soil and subsoilers was established. Results showed that the draft and vertical dynamic forces of the vibrating tines periodically changed and had distinct peak and valley phases in one period. The value of the draft and vertical forces in the valley phase of a vibrating subsoiler was much less than that of the rigid one, which led to the decrease of mean draft force. The soil disturbance widths, velocities, and horizontal and vertical forces of soil particles also periodically changed. Soil ruptures mainly occurred when a tine vibrated in the forward direction. Compared with a rigid tine, a vibrating tine had more time to disturb soil particles and thus to achieve better soil fracture. The DEM model was validated by comparing it with an actual soil bin test. The errors of the simulation model in predicting the soil disturbance and forces were less than 13.23% and 9.65%, respectively, indicating that the model is a useful tool to simulate the dynamic interaction of soil and a vibrating subsoiler.
机译:与刚性1相比,振动底阱可以有效地降低牵引力。已经开发了几种理论和实验方法来研究土壤和振动工具的相互作用,从而探索振动底阱的机制来减少牵引力。然而,由于非线性土壤性质,这些方法无法预测工具和土壤行为的动态力。本文采用离散元法(DEM)模拟振动耕作。目的是清楚地了解振动工具和土壤行为的动态力量。选择三种不同类型的代表性振动底线和一个刚性的代表进行该研究。这些底层器在它们的叉子和振动结构中变化。建立了土壤和脱土器的DEM模型。结果表明,振动曲线的牵伸和垂直动态力周期性地改变,并在一个时期内具有不同的峰和谷阶段。振动底阱的谷阶段中的牵伸和垂直力的值远小于刚性的晶片相的价值,这导致了平均牵伸力的降低。土壤干扰宽度,速度和水平和水平和垂直力和垂直力也定期改变。当在向前方向振动时,土壤破裂主要发生。与刚性齿相比,振动齿有更多的时间来干扰土壤颗粒,从而实现更好的土壤骨折。通过将其与实际的土箱试验进行比较,验证了DEM模型。在预测土壤干扰和力方面的误差分别小于13.23%和9.65%,表明该模型是模拟土壤和振动底阱的动态相互作用的有用工具。

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