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生产油井井下温度场数值模拟分析

机译:生产油井井下温度场数值模拟分析

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An improved numerical simulation method is presented to calculate the downhole temperature distribution for multiple pay zones in producing oil wells. Based on hydrodynamics and heat transfer theory, a 2-D temperature field model in cylindrical coordinates is developed. In the model, we considered general heat conduction as well as the heat convection due to fluid flow from porous formation to the borehole. We also take into account the fluid velocity variation in the wellbore due to multiple pay zones. We present coupled boundary conditions at the interfaces between the wellbore and adjacent formation, the wellbore and pay zone, and the pay zone and adjacent formation. Finally, an alternating direction implicit difference method (ADI) is used to solve the temperature model for the downhole temperature distribution. The comparison of modeled temperature curve with actual temperature log indicates that simulation result is in general quite similar to the actual temperature log. We found that the total production rate, production time, porosity, thickness of pay zones, and geothermal gradient, all have effects on the downhole temperature distribution.
机译:提出了一种改进的数值模拟方法,以计算生产油井中多个工资区的井下温度分布。基于流体动力学和传热理论,开发了圆柱形坐标中的2-D温度场模型。在该模型中,我们考虑了一般性导热以及由于流体流动从多孔形成到钻孔而导致的热对流。我们还考虑了由于多个支付区域而导致井筒的流体速度变化。我们在井筒和相邻地层,井筒和支付区域和支付区域和相邻地层之间呈现耦合边界条件。最后,使用交替方向隐式差分方法(ADI)来解决井下温度分布的温度模型。具有实际温度日志的模型温度曲线的比较表明仿真结果通常与实际温度日志非常相似。我们发现,总生产率,生产时间,孔隙度,支付区域的厚度和地热梯度,都对井下温度分布产生影响。

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