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首页> 外文期刊>Computers and Electronics in Agriculture >Simulation of seed motion in seed feeding device with DEM-CFD coupling approach for rapeseed and wheat
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Simulation of seed motion in seed feeding device with DEM-CFD coupling approach for rapeseed and wheat

机译:用DEM-CFD耦合方法对油菜籽和小麦的种子进料装置中种子运动的模拟

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A numerical study of gas-solid flow in seed feeding device of air-assisted centralized metering system was carried out by means of Discrete Element Method (DEM) and Computational Fluid Dynamics (CFD) coupling approach. In this model, discrete particles phase was applied by EDEM software and continuum gas phase was described by ANSYS Fluent software. Effects of throat's area, throat length, airflow inlet velocity and seed feed rate were studied and analyzed in terms of gas field and seed movement. Simulation results showed that, throat's area and airflow inlet velocity mainly affected airflow outlet velocity and seed velocity of airflow direction which resulted from drag force, while seed movement was affected by throat length and seed feed rate slightly. The increase of throat area resulted in the decrease of seed velocity and pressure loss in a certain range. Seeds moved slowly and generated the phenomenon of bounce and concentration for low airflow inlet velocities. With the airflow inlet velocity increased, resultant force and seed velocity developed. The proper airflow inlet velocity was 16-20 m/s and 20-24 m/s for rapeseed and wheat, respectively. It showed that DEM-CFD coupling approach is reliable as a tool for understanding the physical phenomenon of seed movement in airflow field. Numerical simulation of seed motion based on DEM-CFD coupling approach can provide theoretical basis for developing operating performance of seed feeding device. (C) 2016 Elsevier B.V. All rights reserved.
机译:利用离散元法(DEM)和计算流体动力学(CFD)耦合方法对空气辅助集中计量系统种子进料装置中气固两相流进行了数值研究。在该模型中,通过EDEM软件应用了离散颗粒相,并通过ANSYS Fluent软件描述了连续气相。从气田和种子运动的角度研究和分析了喉部面积,喉部长度,气流入口速度和种子进料速率的影响。仿真结果表明,喉咙的面积和气流的入口速度主要影响气流的出口速度和气流方向的种子速度,这是由于阻力引起的,而种子的运动受到喉咙长度和种子进给速度的影响很小。喉部面积的增加导致种子速度和压力损失在一定范围内下降。种子移动缓慢并在低气流入口速度时产生反弹和集中现象。随着气流入口速度的增加,合力和种子速度逐渐增大。油菜籽和小麦的合适气流入口速度分别为16-20 m / s和20-24 m / s。结果表明,DEM-CFD耦合方法可作为了解气流场中种子运动的物理现象的可靠工具。基于DEM-CFD耦合方法的种子运动的数值模拟可以为开发种子给料装置的运行性能提供理论依据。 (C)2016 Elsevier B.V.保留所有权利。

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