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On Temperature Fall-Off Interpretation in Circulation Phase of Steam-Assisted Gravity Drainage Process

机译:蒸汽辅助引力排水过程循环阶段温度衰落解释

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Steam-assisted gravity drainage (SAGD) is the method of choice to extract bitumen from Athabasca oil sand reservoirs in Western Canada. Bitumen at reservoir condition is immobile due to high viscosity and its saturation is typically large that limits the injectivity of a steam at in-situ condition. In a current industry practice, steam is circulated within injection and production wells. In theory wells, should be converted to SAGD production mode once bitumen at interval is mobile and communication is established between the injector and the producer. Operators try to use temperature fall-off data to predict successful conversion time. Although the bitumen heating sounds simple approach recently three wells fails after steam injection due to steam break-through or sand production. And they are periodically returned to circulation to ramp up production rates and heal the hot spots. Most such failures are associated with early conversion to full SAGD. This paper presents a method to describe physics based initial steam injection timing and describes different Suncor assets viscosity variation with temperature and a proper interval temperature for initiation of steam injection in SAGD process. In this study an analytical tool is developed using time-of-flight (ToF) concept to match the temperature fall-off data. The tool is used to discuss successful and failed cases in Suncor McKay River asset.
机译:蒸汽辅助重力引流(SAGD)是从加拿大西部阿斯巴斯卡油藏中提取沥青的选择方法。由于高粘度,储层条件下的沥青通常是由于高粘度,并且其饱和通常大,其限制在原位状态下蒸汽的注射性。在目前的行业实践中,蒸汽在注射和生产井内流动。在理论井中,一旦在间隔是移动的沥青的情况下,应该转换为SAGD生产模式,并且在喷射器和生产者之间建立通信。操作员尝试使用温度掉落数据来预测成功的转换时间。虽然沥青加热声音很简单的方法,最近三个井在蒸汽喷射后失效,因为蒸汽突破或砂生产。他们周期性地返回到流通,以加速生产率并治愈热点。大多数此类失败与早期转换相关联到完全SAGD。本文介绍了一种描述基于物理学的初始蒸汽喷射正时的方法,并描述了与温度和适当的间隔温度的不同的Suncor资产粘度变化,以启动SAGD过程中的蒸汽喷射。在本研究中,使用飞行时间(TOF)概念来开发分析工具,以匹配温度掉落数据。该工具用于讨论Suncor Mckay River资产中的成功和失败案例。

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