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Discrete Element Method (DEM) simulation of corn grain flow in commercial screw auger

机译:商用螺旋钻中玉米谷物流的离散元方法(DEM)模拟

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摘要

Screw augers are primary grain conveying equipment. Quantitative prediction of screw auger performance requires better understanding and measurement of bulk particle-to-particle and particle-to-geometry interactions. Discrete Element Modeling (DEM) has the potential to simulate particle dynamics and flow within a screw auger, and thus to provide simulation-based guidance for screw auger design and operational parameters. The objective of this study was to calibrate DEM corn modeling using Angle of Repose (AOR) and to simulate DEM corn flow in a commercial screw auger. Experimental data was collected to characterize harvested corn, angle of repose, and grain flow from a screw auger.Corn particle was modeled using four types of DEM spheres represented as 1-sphere and clumped spheres 2-sphere, 5-sphere and 13-sphere matching to a physically measured corn shape with equivalent geometrical diameter, 2D axial dimension, 3D axial dimension, and parameterized CAD dimensions, respectively. For each DEM corn shape approximation, virtual Design Of Experiments (DOE) with four DEM material interaction coefficients as independent parameters and reproducing AOR test initial conditions were developed in EDEM to simulate AOR grain flow behavior. AOR values from quasi-static corn flow on flat plate were measured in lab and compared with the DOE DEM simulation. The DEM corn with 2-sphere and the material interaction coefficients showed good prediction to the experimental corn AOR test with minimum corn height test and DEM prediction difference of Mean Square Error (MSE) (5.31 mm2) compared to 1-sphere, 5-sphere and 13-spheres. With computationally-inexpensive shape and calibrated DEM material properties from AOR, screw auger DEM simulation of corn model was performed to predict mass flow rate. Results from DEM, analytical solutions, and experimental data on mass flow rate were also compared.
机译:螺旋钻是主要的谷物运输设备。螺杆螺旋钻机性能的定量预测需要更好地理解和测量颗粒间的相互作用以及颗粒间的相互作用。离散元素建模(DEM)可以模拟螺杆螺旋钻内部的颗粒动力学和流动,从而为螺杆螺旋钻的设计和操作参数提供基于仿真的指导。这项研究的目的是使用休止角(AOR)校准DEM玉米模型,并模拟商用螺旋钻中的DEM玉米流量。收集实验数据以表征收获的玉米,休止角和螺旋钻的谷物流。使用四种类型的DEM球体(1球体和成簇的球体2球体,5球体和13球体)对玉米颗粒进行建模匹配到具有等效几何直径,2D轴向尺寸,3D轴向尺寸和参数化CAD尺寸的物理测量的玉米形状。对于每个DEM玉米形状近似值,在EDEM中开发了以四个DEM材料相互作用系数作为独立参数并重现AOR测试初始条件的虚拟实验设计(DOE),以模拟AOR晶粒流动行为。在实验室中测量了准静态玉米在平板上的流动的AOR值,并将其与DOE DEM模拟进行了比较。具有2个球体的DEM玉米和材料相互作用系数对最小玉米高度试验的玉米AOR试验和与1个球体,5个球体的均方误差(MSE)(5.31 mm2)的DEM预测差异显示出良好的预测和13个球体。利用AOR计算便宜的形状和校准的DEM材料属性,对玉米模型进行了螺旋钻DEM仿真,以预测质量流量。还比较了DEM,分析溶液和质量流量实验数据的结果。

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