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Axial Force At The Vessel Bottom Induced By Axial Impellers

机译:轴向叶轮在容器底部产生的轴向力

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This paper deals with the axial force affecting the flat bottom, of a cylindrical stirred vessel. The vessel is equipped with four radial baffles and is stirred with a four 45° pitched blade impeller pumping downwards. The set of pressure transducers is located along the whole radius of the flat bottom between two radial baffles. The radial distribution of the dynamic pressures indicated by the transducers is measured in dependence on the impeller off-bottom clearance and impeller speed. It follows from the results of the experiments that under a turbulent regime of flow of an agitated liquid the mean time values of the dynamic pressures affecting the bottom depend not on the impeller speed but on the impeller off-bottom clearance. According to the model of the flow pattern of an agitated liquid along the flat bottom of a mixing vessel with a pitched blade impeller, three subregions can be considered in this region: the liquid jet streaming downwards from the impeller deviates from its vertical (axial) direction to the horizontal direction, the subregion of the liquid flowing horizontally along the bottom and, finally, the subregion of the liquid changing direction from the bottom upwards (vertically) along the wall of the cylindrical vessel, when the volumetric flow rales of the liquid taking place in the downward and upward flows are the same.
机译:本文探讨了影响圆柱形搅拌容器平底的轴向力。该容器配有四个径向挡板,并用向下泵送的四个45°倾斜叶片叶轮进行搅拌。压力传感器组沿着两个径向挡板之间的平坦底部的整个半径定位。由换能器指示的动压的径向分布是根据叶轮离轴间隙和叶轮速度来测量的。从实验结果得出,在搅动的液体的湍流状态下,影响底部的动压的平均时间值不取决于叶轮速度,而是取决于叶轮离地间隙。根据搅拌液体沿着带有倾斜叶片式叶轮的混合容器的平底的流动模式的模型,可以在该区域中考虑三个子区域:从叶轮向下流的液体射流偏离其垂直(轴向)方向当液体的体积流规则时,液体的子区域沿着底部水平流动,最后,液体的变化方向的子区域沿着圆筒形容器的壁从底部向上(垂直)从底部向上(垂直)流动发生在向下和向上的流量是相同的。

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