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DEM-CFD coupling simulation and optimization of an inside-filling air-blowing maize precision seed-metering device

机译:DEM-CFD耦合模拟和优化内部填充空气吹气玉米精密种子计量装置

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摘要

Simulation of the gas-solid flow in an inside-filling air-blowing maize precision seed-metering device was performed by means of a coupling approach of the discrete element method (DEM) and computational fluid dynamics (CFD). In this model, EDEM software was used to depict the discrete particle phase, and ANSYS Fluent software was used to describe the continuous gas phase. Maize particles were created by EDEM software using the bonded particle model (BPM) to define a single structure of the particles. Effects of the positions, the width and the average arc length of the lateral hole were examined and analyzed in terms of gas field and seed movement. Using an orthogonal experimental design, the primary and secondary factors and parameters of the maximum evaluation index affecting the working performance of a seed-metering device were assessed. The superiority of a lower position of the lateral hole was identified, as both the width and the average arc length of the lateral hole had no effect on the drag force or differential pressure. The area of the lateral hole significantly affected the movement and airflow field of seeds in the hole of a seed-metering device. The drag force, the differential pressure and the pressure loss increase with the expansion of the area of the lateral hole also resulted in a decrease in the upper pressure. The optimized lateral hole, which is 1.5 mm wide and has an average arc length of 10 mm when the position is lower, had a good working performance, with less pressure loss, superior drag force and differential pressure. The qualified rate of the optimized seed-metering device was greater than 93% when the working pressure was above 5.5 kPa with a working speed lower than 10 km/h through experiment. The results showed that the DEM-CFD coupling approach was a reliable instrument for simulating the physical phenomenon of seed movement in the airflow field. DEM-CFD coupling simulation of seed movement can provide a theoretical basis for assessment of the potential working performance of an inside-filling air-blowing seed-metering device.
机译:通过离散元件方法(DEM)和计算流体动力学(CFD)的耦合方法进行内填充空气吹气玉米精密种子计量装置的气固流动的模拟。在该模型中,使用EDEM软件来描绘离散粒子阶段,并且使用ANSYS流畅的软件来描述连续气相。使用粘合的粒子模型(BPM)由EDEM软件创建玉米颗粒以限定颗粒的单个结构。在气田和种子运动方面,检查并分析了横向孔的宽度,宽度和平均弧长的影响。利用正交的实验设计,评估了影响种子计量装置的工作性能的最大评价指标的主要和次要因素和参数。鉴定横向孔的较低位置的优越性,横向孔的宽度和平均电弧长度都没有对拖曳力或差压的影响。横向孔的区域显着影响了种子计量装置孔中的种子的运动和气流场。拖动力,差压和压力损失随着横向孔的面积的膨胀也导致上压降低。当位置较低时,优化的横向孔,宽度为1.5毫米宽,平均弧长10毫米,具有良好的工作性能,压力损失较小,牵伸力和差压。当工作压力高于5.5kPa时,优化的种子计量装置的合格率大于93%,通过实验低于10km / h。结果表明,DEM-CFD耦合方法是用于模拟气流场中种子运动的物理现象的可靠仪器。 DEM-CFD耦合仿真的种子运动可以为评估内填充空气吹割种子计量装置的潜在工作性能提供理论依据。

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