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首页> 外文期刊>International Journal of Rotating Machinery >An Experimental Study on the Fluid Forces Induced by Rotor-Stator Interaction in a Centrifugal Pump
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An Experimental Study on the Fluid Forces Induced by Rotor-Stator Interaction in a Centrifugal Pump

机译:离心泵中转子与定子相互作用产生的流体力的实验研究

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The pressure fluctuations and the radial fluid forces acting on the impeller, the pressures in the volute, as well as the vibration of the shaft in a centrifugal pump were measured simultaneously, and their relationship was investigated. Experiments were done for various diffuser vanes, flow rates, and rotating speeds. It was demonstrated that both the blade-pressure fluctuations and the volute static pressures are nonuniform circumferentially (not axisymmetrical) under off-design operating conditions and that the two have a strong relationship. At high flow rates, the blade pressure fluctuations, induced by rotor-stator interactions, are large in areas where the volute static pressure is low. The traveling directions of the rotating pressure waves, the whirling directions of the radial fluid forces, and the most predominant frequency components of both the fluctuations and the forces are discussed, and an equation for predicting them is introduced. It was also noted that large alternating fluid forces are not necessarily associated with large pressure fluctuations. Furthermore, when measuring the radial fluid forces in the rotating frame, other frequency components, in addition to those related to the products of the diffuser vane number and the rotating frequency, may occur due to the circumferential unevenness of the pressure fluctuations on the impeller. These components are predictable.
机译:同时测量了作用在叶轮上的压力波动和径向流体力,蜗壳中的压力以及离心泵中轴的振动,并研究了它们之间的关系。针对各种扩压器叶片,流量和转速进行了实验。结果表明,在非设计工况下,叶片压力波动和蜗壳静压力在圆周上都是不均匀的(不是轴对称的),并且两者之间有很强的关系。在高流速下,由于蜗壳静压低的区域,由转子-定子相互作用引起的叶片压力波动较大。讨论了旋转压力波的传播方向,径向流体力的回旋方向以及脉动和力的最主要频率分量,并介绍了预测它们的方程。还应注意,较大的交变流体力不一定与较大的压力波动有关。此外,当测量旋转框架中的径向流体力时,由于与叶轮上的压力波动的周向不均匀性,除了与扩压器叶片数和旋转频率的乘积相关的那些频率分量之外,还会出现其他频率分量。这些组成部分是可预测的。

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