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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Rotordynamics of a Two-Phase Flow Twin Screw Pump
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Rotordynamics of a Two-Phase Flow Twin Screw Pump

机译:两相流双螺杆泵的转子动力学

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摘要

Twin screw pumps are positive displacement machines. Two meshing screws connected by timing gears push the fluid trapped in the screw cavities axially from suction to discharge. Available steady state hydraulic models predict pump performance and axial pressure distribution in the chambers in single- and two-phase flow conditions. However, no model is available for their rotordynamics behavior. Due to the helix angle of the screw, the pressure distribution around the rotor is not balanced, giving rise to both static and dynamic lateral forces. The work presented here introduces a starting point for rotordynamic analysis of twin screw pumps. First, we show that the screw rotor's geometry can be represented by axisymmetric beam elements. Second, we extend the steady state hydraulic model to predict both the static and dynamic lateral forces resulting from the unbalanced pressure field. Finally, hydraulic forces are applied to the rotor to predict static, synchronous, and nonsynchronous responses. Predictions of the dynamic pressure were compared to measurements from the literature and were found to be in good agreement.
机译:双螺杆泵是容积泵。由定时齿轮连接的两个啮合螺钉将滞留在螺钉腔中的流体从吸力轴向排出。可用的稳态液压模型可预测单相和两相流动条件下泵的性能和腔室内的轴向压力分布。但是,没有模型可用于其转子动力学行为。由于螺杆的螺旋角,转子周围的压力分布不平衡,从而产生静态和动态侧向力。这里介绍的工作为双螺杆泵的转子动力学分析提供了一个起点。首先,我们证明了螺杆转子的几何形状可以由轴对称梁单元表示。其次,我们扩展稳态水力模型以预测由于压力场不平衡而产生的静态和动态侧向力。最后,将液压施加到转子上以预测静态,同步和非同步响应。将动压的预测与文献中的测量值进行了比较,发现它们之间具有很好的一致性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2013年第6期|062502.1-062502.12|共12页
  • 作者单位

    Graduate Research Turbomachinery Laboratory,Texas A&M University,College Station, TX 77843-3123;

    Leland T. Mechanical Engineering Turbomachinery Laboratory,Texas A&M University,College Station, TX 77843-3123;

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