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首页> 外文期刊>Mathematical Problems in Engineering >Analytical Model for the Flow in Progressing Cavity Pump with the Metallic Stator and Rotor in Clearance Fit
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Analytical Model for the Flow in Progressing Cavity Pump with the Metallic Stator and Rotor in Clearance Fit

机译:金属定子和转子间隙配合的渐进式腔泵流动分析模型

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摘要

As the metallic stator progressing cavity pump (PCP) operates with the stator and rotor in clearance fit, the slippage between cavities has a significant influence on the pump performance. In this paper, an analytical model is developed for the flow in the metallic stator PCP. Based on the analyses of the meshing movement and the clearance geometry inside the pump, the slippage through the transversal and longitudinal sealing regions is calculated considering different slippage mechanisms. Then the flow rate is obtained by subtracting the total slippage from the theoretical volumetric rate. This model is validated against results obtained from the performance experiments of commercial metallic stator PCP products from Shihong Petroleum Equipment Company. The model results show that the metallic stator PCP with smaller clearance or more stages is more capable of achieving good performance at high differential pressure. It is suitable for pumping the fluid with certain viscosity, and the influence of the slippage can be compensated by adopting appropriate high rotational speed. Furthermore, the model can be used to predict the pump performance and provide guidance for the pump design and performance optimization in field applications.
机译:当金属定子螺杆泵(PCP)在定子和转子间隙配合的情况下运行时,空腔之间的滑动会严重影响泵的性能。本文针对金属定子PCP中的流动建立了解析模型。基于对泵内啮合运动和间隙几何形状的分析,考虑了不同的滑动机理,计算了通过横向和纵向密封区域的滑动。然后,通过从理论体积速率中减去总滑差来获得流速。该模型是根据从石红石油装备公司购买的商用金属定子PCP产品的性能实验所获得的结果验证的。模型结果表明,具有较小间隙或更多级的金属定子PCP在较高的压差下更具有良好的性能。它适用于泵送一定粘度的流体,并且通过采用适当的高转速可以补偿打滑的影响。此外,该模型可用于预测泵的性能,并为现场应用中的泵设计和性能优化提供指导。

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