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Rotordynamics of twin screw pumps.

机译: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 convey the fluid trapped in the screw chambers axially from suction to discharge and force it out against the back pressure. Because of the screw geometry, the circumferential pressure field around the screws is not balanced, resulting in net dynamic and static pressures applied on the rotors. The research work presented here aims at building and verifying a model to predict both: (1) the exciting lateral hydrodynamic forces produced by the unbalanced pressure field, and (2) the rotor response due to those forces. The model rests on the screw pump hydraulic models for predicting the pressure in the screw chambers as a function of the discharge pressure. These models are extended to predict the steady state dynamic pressure field as a function of the rotational angle of the rotor. The dynamic force resulting from the dynamic pressure field is calculated and applied to the rotor as a set of super-synchronous periodic forces. The structural model of the screw, although nonsymmetrical, was found to be accurately represented by an axisymmetric equivalent structure. The rotor response to the dynamic super-synchronous forces is calculated to predict the pump rotordynamic behavior.;The work in this dissertation presents: (1) the axisymmetric structural model of the rotors (2) the proposed dynamic pressure model, (3) the screw pump rotor response, (4) the experimental validation of the dynamic pressure model and rotor response.;The topic of twin-screw pump rotordynamics is absent from the literature. The original contribution of the work presented in this dissertation to the field of rotordynamics includes: (1) demonstrating the adequacy of an axisymmetric model for modeling the screw section, (2) developing a model for predicting the dynamic pressure field around the screws, (3) characterization of the dynamic forces (synchronous and its harmonics) applied at the screw pump rotors, (4) predicting the dynamic response of twin-screw pump rotors due to hydrodynamic forces, (5) measuring the axial dynamic pressure in two circumferential planes around the screws to verify pressure predictions, (6) measuring the dynamic response of twin-screw pump rotor.
机译:双螺杆泵是容积泵。由定时齿轮连接的两个啮合螺丝将滞留在螺杆腔中的流体从吸力轴向输送至排出,并抵抗背压将其推出。由于螺杆的几何形状,螺杆周围的圆周压力场不平衡,从而导致施加在转子上的净动静压力。此处提出的研究工作旨在建立和验证模型,以预测以下两个方面:(1)由不平衡压力场产生的令人兴奋的侧向流体动力,以及(2)由这些力引起的转子响应。该模型基于螺杆泵液压模型,用于预测螺杆腔中的压力作为排出压力的函数。扩展了这些模型,以预测稳态动压力场随转子旋转角度的变化。计算由动态压力场产生的动力,并将其作为一组超同步周期力施加到转子上。螺钉的结构模型虽然不对称,但可以精确地用轴对称等效结构表示。通过计算转子对动态超同步力的响应来预测泵的转子动力学行为。本论文的工作提出:(1)转子的轴对称结构模型;(2)提出的动压力模型;(3)螺杆泵转子响应,(4)动压模型和转子响应的实验验证。;文献中没有双螺杆泵转子动力学的话题。本文对转子动力学领域所做的工作的原始贡献包括:(1)证明了用于对螺杆截面进行建模的轴对称模型的充分性;(2)开发了用于预测螺杆周围动压场的模型,( 3)表征螺杆泵转子上施加的动态力(同步及其谐波),(4)预测由于水动力产生的双螺杆泵转子的动态响应,(5)测量两个圆周平面上的轴向动压力在螺钉周围验证压力预测,(6)测量双螺杆泵转子的动态响应。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Applied Mechanics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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