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Computational fluid dynamic study of primary parallel fan stations

机译:主要平行风扇站的计算流体动力学研究

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A computational fluid dynamic (CFD) study was developed considering primary parallel fan stations that are currently in operation within Chilean mines. A set of three station designs were considered, and the CFD modelling was used to simulate the operating points of the fan curves comparing operating performance in terms of airflow pressure and energy consumption. This approach allowed for the identification of the best primary fan configuration based on resistance curve and energy consumption relating to the fan station geometry. To standardise the comparison between the different stations, the same primary fan was used in all the simulations at the same fixed blade angle and speed setting. The simulation implemented the use of three-dimensional models, based on two-dimensional prints, considering 7.2 x 7.2 m cross-section headings. Five resistance values were obtained reflecting the fan operating points; one for each geometry, which were then used to identify which model presented the best fan performance. This paper presents the results obtained through the CFD simulations and the corresponding operating points of primary fans. The results are discussed taking into account pressure, velocity and vector contours to understand the fluid dynamics phenomena occurring inside the station. The best-performing station geometry was identified based on the lowest frictional and shock pressure losses, highest airflow delivery and lowest energy cost.
机译:考虑到目前在智利矿山内运行的主要平行风扇站,开发了一种计算流体动力学(CFD)研究。考虑了一组三个站设计,并且CFD建模用于模拟风扇曲线的操作点比较气流压力和能量消耗方面的操作性能。这种方法允许基于电阻曲线和与风扇站几何有关的能量消耗来识别最佳主风扇配置。为了标准化不同站之间的比较,在相同的固定刀片角度和速度设置的所有模拟中使用相同的主风扇。考虑到7.2 x 7.2 m横截面标题,模拟实现了三维模型的使用,基于二维印刷品。获得五种电阻值,反映风扇操作点;然后,每个几何图形,然后用于识别哪种模型呈现最佳的风扇性能。本文介绍了通过CFD仿真获得的结果和主要风扇的相应运行点。考虑到压力,速度和向量轮廓来讨论结果以了解车站内发生的流体动力学现象。基于最低摩擦和冲击压力损失,最高气流输送和最低能量成本来识别最佳执行站几何。

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