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Thermal Performance Testing of a High-Temperature ESP Motor for SAGD Applications

机译:用于SAGD应用的高温ESP电机的热性能测试

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During 2012, BakerHughes, ConocoPhillips and Nexen Inc. continued their research partnership [Waldner 2011] with a new experimental test program focused on the thermal performance of Electric Submersible Pump (ESP) systems for Steam Assisted Gravity Drainage (SAGD) applications, which was completed in the high-temperature flow loop at C-FER Technologies. Accurately monitoring the internal temperature of the ESP motor is a key consideration when trying to increase the operational longevity of an ESP system for any application; however, as the SAGD process develops, understanding this temperature profile has become more critical. This test program included several tests at various fluid temperatures and ESP operating conditions that helped determine the thermal performance of the ESP motor. Another unique aspect of this test program was the incorporation of two different temperature monitoring methods at approximately the same position on the internal and external base of the ESP motor: one internal probe positioned near the motor windings via a fiber optic sensor and one external skin temperature RTD positioned on the motor surface to monitor this important tempera ature differential. This paper presents the equipment and instrumentation used, and demonstrates some of the more interesting test results, thus providing further insight into the thermal performance of this ESP motor under representative SAGD conditions between 220°C (428°F) and 250°C (482°F).
机译:2012年,Bakerhughes,Conocophillips和Nexen Inc.继续他们的研究合作伙伴关系[Waldner 2011]采用新的实验测试程序,专注于蒸汽辅助重力排水(SAGD)应用的电动潜水泵(ESP)系统的热性能,该应用已完成在C-FER技术的高温流回路中。准确监测ESP电机的内部温度是在试图增加任何应用程序的ESP系统的运行寿命时的关键考虑因素;然而,随着SAGD过程的发展,理解该温度曲线变得更加重要。该测试程序包括各种流体温度和ESP操作条件的多个测试,有助于确定ESP电机的热性能。该测试程序的另一个独特方面是在ESP电机的内部和外部底座上的大致相同位置掺入两种不同的温度监测方法:通过光纤传感器和一个外部皮肤温度定位在电机绕组附近的一个内部探头定位在电机表面上的RTD以监测这种重要的温度差异。本文介绍了所使用的设备和仪器,并展示了一些更有趣的测试结果,从而进一步了解在220°C(428°F)和250°C(482)之间的代表性SAGD条件下的这种ESP电机的热性能。(482 °F)。

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