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VALIDATING FLUENT FOR THE FLOW OF GRANULAR MATERIALS IN AERIAL SPREADERS

机译:空气扩散器中颗粒材料流动的验证流质

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A simulation model for predicting the velocity vectors of fertilizer particles emanating from an aerial spreader was developed using a commercial software package FLUENT version 4.32. Simulation results for urea particles emanating from a curved duct were compared with laboratory results. The particle size (geometric mean particle diameters) ranged from 1.30 mm to 2.82 mm and the air velocity at the inlet of a curved duct was varied from 42 m/s to 62 m/s. FLUENT always predicted lower particle velocities than were measured in the laboratory. The difference was attributed to uneven shape of the particles and modeling errors. FLUENT predicted particle velocities could be corrected with a correction factor specific to a fertilizer. For materials having particles of different shapes the value for correction factor would be different. The particle velocity was found to be linearly related to the air velocity. The effect of the particle size on its velocity was quadratic, with smaller particles attaining higher velocities at the exit from the duct than did the larger particles.
机译:使用商业软件包FLUENT版本4.32开发了一个用于预测从空中撒布机散发出的肥料颗粒速度矢量的仿真模型。将弯曲导管排放的尿素颗粒的模拟结果与实验室结果进行了比较。粒径(几何平均粒径)为1.30 mm至2.82 mm,弯曲导管入口处的空气速度为42 m / s至62 m / s。 FLUENT始终预测比在实验室中测得的颗粒速度要低。差异归因于颗粒形状不均匀和建模错误。 FLUENT预测的颗粒速度可以使用特定于肥料的校正因子进行校正。对于具有不同形状的颗粒的材料,校正因子的值将不同。发现粒子速度与空气速度成线性关系。粒径对其速度的影响是二次的,与较大的颗粒相比,较小的颗粒在管道出口处获得更高的速度。

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