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Study on Deformations of the Two-Stage Impellers of Contra-Rotating Fan Driven by Pole-Changing Motors

机译:旋转式电动机驱动的旋转风扇两级叶轮变形研究

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To meet the demand of different air distance, the pole-changing motors are used to drive the contra-rotating fan to realize speed matching. With the purpose of analyzing exactly the air pressure on the blades and deformations of the two-stage impellers when the contra-rotating fan runs at different speed ratios, a contra-rotating fan as FBD5.0/2 × 7.5 for coal mining is studied in this paper. A 3D physical model for the fan's flow passage is established. In order to get a more accurate 3D model for the two-stage impellers, the point clouds of the two-stage impellers are obtained using a 3D infrared scanner. The boundary conditions and assumed conditions for solving the air pressure on the blade surfaces are given. Based on the 3D physical mode and the boundary conditions, the air pressure distribution on blades surface when the two-stage impellers run at four different speed ratios is calculated. Based on the air pressure on blades, the deformations of the two-stage impellers are calculated and analyzed. The relationship between impellers deformation and rotating speed are gotten. Moreover, the maximum deformation quantities of the impellers are obtained as well. The results provide a necessary basis for the safe operation of the contra-rotating fan.
机译:为了满足不同的空气距离的需求,变极电机用于驱动双反转风扇以实现速度匹配。当对反旋转风扇以不同的速度比率运行时,在对抗旋转风扇运行时,分析了两级叶轮的变形的空气压力,研究了煤炭煤矿的对抗旋转风扇作为FBD5.0 / 2×7.5在本文中。建立了风扇流动通道的3D物理模型。为了获得两级叶轮的更精确的3D模型,使用3D红外扫描仪获得两级叶轮的点云。给出了用于求解刀片表面上的气压的边界条件和假设条件。基于3D物理模式和边界条件,计算叶片表面上的空气压力分布,当计算出四个不同速度比的两级叶轮运行时。基于叶片上的气压,计算并分析了两级叶轮的变形。叶轮变形与旋转速度之间的关系得到了。此外,也获得了叶轮的最大变形量。结果为旋转风扇的安全操作提供了必要的基础。

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