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首页> 外文期刊>Journal of Petroleum Science & Engineering >Modeling the design and performance of progressing cavity pump using 3-D vector approach
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Modeling the design and performance of progressing cavity pump using 3-D vector approach

机译:使用3-D矢量方法对螺杆泵的设计和性能进行建模

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Progressing Cavity Pumps (PCP), a type of Moineau pumps, is an artificial lift method often used for high viscosity and solids producing wells. In this paper, the three-dimensional vector theory and the theory of Hypocydoid were used to give a new modeling insight into the design and performance of PCPs. Specifically, a new design model and procedure of PCPs was developed and described in detail, in addition to a new mathematical model to determine the theoretical pump factor for any given PCP. A Sensitivity analysis was carried out to study the effects of the pump eccentricity, semicircle diameter and motor rotational speed on the pump performance. The results of this study are not only important for manufacturers to optimize PCP's design, but also for operators to improve the performance and efficiency of such PCPs.
机译:Moineau泵的一种类型的螺杆泵(PCP)是一种人工举升方法,通常用于高粘度和产生固体的井。在本文中,三维矢量理论和次球体理论被用来为PCP的设计和性能提供新的建模见解。具体而言,除了用于确定任何给定PCP的理论泵系数的新数学模型之外,还开发并详细描述了PCP的新设计模型和程序。进行了敏感性分析,以研究泵的偏心距,半圆直径和电动机转速对泵性能的影响。这项研究的结果不仅对制造商优化PCP的设计很重要,而且对运营商提高此类PCP的性能和效率也很重要。

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