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RADIAL THRUST OF SINGLE-BLADE CENTRIFUGAL PUMP

机译:单叶离心泵的径向推力

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A single-blade centrifugal pump is widely used as a sewage pump. However, a single-blade is acted on by a large radial thrust during the pump operation because of the geometrical axial asymmetry of the impeller. Therefore to secure the pump reliability, it is necessary to grasp the radial thrust quantitatively and elucidate a behavior and a generation mechanism. This study investigated the radial thrust acting on a single-blade centrifugal impeller by an experiment and a CFD analysis, and the results clearly indicated the following facts. The fluctuating component of the radial thrust increased as the flow rate changed from the design flow rate to a partial or excessive flow rate. Furthermore, the radial thrust was modeled by a combination of three components, inertia, momentum and pressure components by applying unsteady conservation of momentum to this impeller. The grand total of these components was in agreement with the radial thrust calculated by integrating the pressure and the shearing stress on the impeller surface. In addition the behavior of each component was shown and the effects of those components that gave to the radial thrust were clarified. The pressure component had the greatest effect on a time-averaged value and a fluctuating component of the radial thrust. The time-averaged value of the inertia component was approximately 0 even if the flow rate changed. But its fluctuating component had a magnitude nearly comparable to the pressure component at a partial flow rate and slightly decreased with increase of the flow rate.
机译:单叶片离心泵被广泛用作污水泵。但是,由于叶轮的几何轴向不对称性,单叶片在泵的运行过程中受到较大的径向推力。因此,为了确保泵的可靠性,需要定量地掌握径向推力并阐明其行为和产生机理。本研究通过实验和CFD分析研究了作用在单叶片离心叶轮上的径向推力,结果清楚地表明了以下事实。随着流量从设计流量更改为部分流量或过量流量,径向推力的波动分量增加。此外,径向推力由惯性,动量和压力三个部分组成,对叶轮施加了不稳定的动量守恒模型。这些分量的总和与通过对叶轮表面上的压力和剪切应力积分而计算出的径向推力一致。此外,还显示了每个组件的行为,并阐明了这些组件对径向推力的影响。压力分量对时间平均值和径向推力的波动分量影响最大。即使流量改变,惯性分量的时间平均值也大约为0。但是,在部分流量下,其波动分量的大小几乎与压力分量相当,并且随着流量的增加而略有下降。

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