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The Application of Stefan Problem in Calculating the Lateral Movement of Steam Chamber in SAGD

机译:Stefan问题在计算SAGD中蒸汽室横向运动的应用

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摘要

It is extremely important to monitor the development of steam chambers in reservoirs in the process of SAGD (Steam Assisted Gravity Drainage). By analyzing the temperature data of monitoring wells, the extending velocity and direction of steam chamber can be obtained, which helps to regulate and improve production effectively. Based on Stefan’s inverse problem, a mathematical model is established in this paper for acquiring the extending velocity of steam chamber by using the temperature data of monitoring wells. Mathematical methods are utilized to solve the model such as Fourier transformation as well as an analytic solution using the moving velocity of steam chamber’s edges. Finally, sensitivity analyses concerning some factors such as the formation heat transfer coefficient, the temperature of steam chamber, and the rate of temperature rise of monitoring wells are made. Field application showed that the model can be used to calculate the moving velocity in real time and determine the boundary scope of the steam chambers easily.
机译:监测SAGD(蒸汽辅助重力排水)中储层中蒸汽室的发展是非常重要的。通过分析监测孔的温度数据,可以获得蒸汽室的延伸速度和方向,这有助于有效地调节和提高生产。基于Stefan的逆问题,在本文中建立了一种数学模型,用于通过使用监测孔的温度数据来获取蒸汽室的延伸速度。利用数学方法来解决诸如傅立叶变换的模型以及使用蒸汽室边缘的移动速度的分析解决方案。最后,制造了关于一些因素的敏感性分析,例如形成传热系数,蒸汽室的温度和监测孔的温度升高速率。现场应用表明,该模型可用于实时计算移动速度,并容易地确定蒸汽腔室的边界范围。

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