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Progressing Cavity Pump (PCP): New Performance Equations for Optimal Design

机译:螺杆泵(PCP):优化设计的新性能方程式

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The drive for energy independence has created a window of opportunity to innovations in oil recovery. New artifiial lift methods like progressing cavity pumping (PCP) has been successfully applied to downhole pumping applications. The unique progressing cavity feature has still to be explored fully to handle oil and gas efficiently without any practical problems. The mulitlobe pumps are also making inroads into the industry to be used under different operating conditions. Although the design has been mainly based on empirical standards and trial and error modifications, a more phenomenally optimum design of the pump is required to achieve a high efficiency standard. This requires a more basic analytical consideration. Optimal relationship between the pitch andthe diameter of the housing is obtained to achieve a maximum flowrate for multilobe pumps. This makes it possible to design a power section of the pump with some degree of confidence and predict its performance characteristics with reasonable assurance. The practical usefulness of the theory, backed by the fundamental and optimal analysis for incompressible fluid, is demonstrated with numerical examples.
机译:能源独立的动力为石油采收创新的发展创造了机会之窗。新的人工举升方法,例如螺杆泵(PCP),已经成功地应用于井下泵送应用。仍需充分探索独特的渐进式腔体功能,以有效地处理石油和天然气而没有任何实际问题。多瓣泵也正在进入该行业,以在不同的运行条件下使用。尽管设计主要基于经验标准和反复试验的修改,但要实现高效率标准,还需要对泵进行更为惊人的优化设计。这需要更基本的分析考虑。获得螺距与外壳直径之间的最佳关系,以实现多瓣泵的最大流量。这使得可以以一定的置信度设计泵的动力部分,并在合理保证的情况下预测其性能特征。数值实例证明了该理论的实用性,并通过对不可压缩流体的基础和最佳分析进行了证明。

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