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Models of steam-assisted gravity drainage (SAGD) steam chamber expanding velocity in double horizontal wells and its application

机译:双水平井中蒸汽辅助重力排水模型(SAGD)蒸汽室膨胀速度及其应用

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The development of steam chamber can be used to evaluate steam-assisted gravity drainage (SAGD) performance. The velocity of steam chamber expanding is the key parameter for evaluating the development of steam chamber. Based on SAGD technology theory and heat transfer theory, two calculation model methods, observation well temperature method and steam chamber edge method for estimating the horizontal expanding velocity of steam chamber, were presented. Through analyzing the monitoring data and numerical simulation results of a typical super heavy oil block developed by SAGD in Fengcheng oilfield in Xinjiang, NW China, the development patterns of steam chamber and temperature variation law in the observation well at different stages are determined. The observed temperature data was used to calculate steam chamber expanding velocity. The calculated chamber velocity at different time was applied to predict the temperature distribution of oil drainage zone at the edge of steam chamber and SAGD oil rate. The results indicate that temperature function of high temperature zone in the observation well temperature curve has a linear relationship with measuring depth. The characteristic section can be used to calculate key parameters such as the angle of the drainage interface, expanding edge and velocity of steam chamber. The field production data verify that the results of the two proposed methods of steam chamber growth are reliable and practical, which can provide theoretical support for the efficient development of SAGD.
机译:蒸汽室的开发可用于评估蒸汽辅助重力排水(SAGD)性能。蒸汽室扩展的速度是评估蒸汽室的开发的关键参数。基于SAGD技术理论和传热理论,提出了两个计算模型方法,观察孔温度法和蒸汽室蒸汽室边缘方法估计蒸汽室的水平扩张速度。通过分析由新疆凤城油田开发的典型超重油块的监测数据和数值模拟结果,NW中国,蒸汽室和温度变化法在不同阶段的观察中的开发模式。观察到的温度数据用于计算蒸汽室扩张速度。应用了不同时间的计算腔室速度以预测蒸汽室边缘和荫油速率的排水区的温度分布。结果表明,观察孔温度曲线中的高温区的温度功能具有与测量深度的线性关系。特征部分可用于计算诸如排水界面的角度,蒸汽室的扩展边缘和速度的关键参数。现场生产数据验证了两种提出的蒸汽室生长方法的结果可靠实用,可以为纱布有效发展提供理论支持。

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