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Modelling approach for soil displacement in tillage using discrete element method

机译:不同元素法的耕作土壤位移建模方法

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摘要

The majority of studies dedicated to the dynamic behaviour of agricultural soils are basically focused on prediction of physical conditions within the soil-tool interface whereas the dynamic soil response, such as soil displacement, has not attracted sufficient attention. Considering its importance for engineering applications, the objective of the presented study was to develop a modelling approach to study the soil displacement due to soil interaction with operating tool during sweep cultivation. The developed approach employs the similarity criteria to account for the effect of scaling-up soil particle sizes on model quality and combines (i) an empirical study of soil displacement during a sweep operation and (ii) related numerical simulations using a discrete element model. Soil displacement for three different soil types in soil bins was measured using a tracer methodology. The discrete element model was formulated for cohesive soils with parallel bond contacts between aggregates. The model allows simulation of mechanical tests (used for calibration purposes) and simulation of soil interaction with operating tool during sweep cultivation. This work shows that due to the necessary change in particle sizes of model soil, the conditions of physical equivalence between the model and natural soil can be difficult to satisfy. Such condition can cause significant dissimilarity between measured and simulated soil displacement. However, this can be overcome if the model scaling does not exceed a certain limit which is determined by soil structure and the potential contact density on a tool's contact surface during the soil-tool interaction. By using these findings, our simulations demonstrate that prediction of soil displacement is possible within the suggested approach with sufficient accuracy.
机译:致力于农业土壤动态行为的大多数研究基本上专注于土壤工具界面内物理条件的预测,而动态土壤反应(如土壤位移)尚未引起足够的注意。考虑到其对工程应用的重要性,本研究的目的是开发一种模拟方法,以研究扫掠栽培过程中土壤相互作用的土壤位移。开发方法采用相似性标准来解释缩放土壤粒子尺寸对模型质量的影响,并结合(i)使用离散元件模型的扫描操作期间的土壤位移的实证研究和(II)相关数值模拟。使用示踪方法测量土壤箱中三种不同土壤类型的土壤位移。分立元素模型被配制用于具有平行粘合末端之间的粘性土壤。该模型允许模拟机械测试(用于校准目的)和扫描栽培过程工具的土壤相互作用模拟。这项工作表明,由于模型土壤的粒径的必要变化,模型与天然土壤之间的物理等效条件难以满足。这种病症会在测量和模拟的土壤位移之间引起显着的不同。然而,如果模型缩放在土壤结构和工具接触表面上的潜在接触密度在土壤工具相互作用期间,则可以克服这一点。通过使用这些发现,我们的模拟表明,土壤位移的预测是可以在建议的方法内具有足够的准确度。

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