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Investigation of a Multiphase Twin-screw Pump Operating at High Gas Volume Fractions

机译:在高气体体积分数下运行的多相双螺杆泵的研究

摘要

The use of twin-screw pumps for moving fluids is not new technology but its application to wet gas compression (high gas volume fraction [GVF]) is still considered relatively new. There are many advantages for using twin-screw pumps for oil field applications; three of the immediate improvements include reducing hardware costs, reducing well bore pressure, and producing a pressure boost to move the product to a central collection facility. While there are many advantages to using twin-screw pumps in wet gas applications, there are some problems that have been encountered while operating at high GVFs. When operating at high GVF, over 95 percent twin-screw pumps experience a severe loss of efficiency and an increase of operating temperature. A common way to increase the efficiency while operating in the high GVF range includes adding a liquid recirculation system where a portion of liquid is stored downstream of the pump and is injected into the pump inlet. These systems lower the effective GVF of the multiphase fluid below 95 percent in order to increase the pump efficiency. The first objective is to characterize the performance of a twin-screw pump fitted with a liquid recirculation system while operating under high GVF conditions. The second objective is to investigate the transient heat rise associated with high GVF operation. While traditional twin-screw pumps can be fitted with a liquid recirculation system to allow them to operate under high GVF conditions the pumps themselves are not optimized for wet gas compression and still suffer performance penalties. The results of this investigation show that the liquid recirculation system can allow the pump to operate under high GVF but the heat added to the system reduces the systems efficiency. Without a method of removing the heat generated in the pumping process the pump will not run at its optimal efficiency. The following investigation provides recommendations for further research in area of multiphase pumping using twin-screw pumps based on the characterization and transient studies provided in this thesis.
机译:使用双螺杆泵输送流体不是新技术,但将其应用于湿气压缩(高气体体积分数[GVF])仍然相对较新。在油田应用中使用双螺杆泵有很多优点;目前的三项改进包括降低硬件成本,降低井眼压力以及提高压力以将产品移至中央收集设施。尽管在湿气应用中使用双螺杆泵具有许多优势,但在高GVF下运行时仍遇到一些问题。在高GVF下运行时,超过95%的双螺杆泵会严重损失效率并导致工作温度升高。在高GVF范围内运行时提高效率的常用方法包括添加液体再循环系统,其中一部分液体存储在泵的下游,然后注入到泵的入口。这些系统将多相流体的有效GVF降低到95%以下,以提高泵的效率。第一个目标是表征配备有液体再循环系统的双螺杆泵在高GVF条件下运行时的性能。第二个目的是研究与高GVF运行相关的瞬态热量上升。尽管传统的双螺杆泵可以配备液体再循环系统,以使其能够在高GVF条件下运行,但泵本身并未针对湿气压缩进行优化,仍然会遭受性能损失。这项研究的结果表明,液体再循环系统可以使泵在高GVF下运行,但是添加到系统中的热量会降低系统效率。如果没有消除泵送过程中产生的热量的方法,泵将无法以最佳效率运行。基于本文的特性和瞬态研究,以下研究为双螺杆泵多相泵领域的进一步研究提供了建议。

著录项

  • 作者

    Kroupa Ryan Daniel;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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