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Study on in-depth profile control system of low-permeability reservoir in block H of Daqing oil field

机译:大庆油块中低渗透储层的深入剖面控制系统研究

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摘要

According to the geologic characteristics of low-permeability reservoir in block H of Daqing oilfield, three formulations of gel systems for in-depth profile control treatment in this block was optimized by orthogonal experiment and the profile control effect of these systems was evaluated further by core experiment. The results showed that optimal profile control system can effectively block the high permeability core and have little effect on the low permeability core when the injection volume reached 0.6 PV. The changes of water flooding stable pressure was less than 8% within 45 days when its injection volume between 0.6 PV and 0.9 PV. It had a good plugging effect, and it can enhance oil recovery by more than 11%. The profile control system exhibited excellent thermal stability between 60 degrees C and 80 degrees C. With the increase of shear times, core plugging rate of the optimized profile control system decreased by less than 1.2%, it means that the plugging performance of profile control agent was less affected in the process of in-depth profile control treatment in oilfield. The application of this profile control system in Daqing Oilfield H block has achieved remarkable results. The water cut decreased by 4.66% and the well group oil productions increased by 21% after the in-depth profile control treatment.
机译:根据大庆油区块H中低渗透储存器的地质特征,通过正交实验优化了该嵌段在该嵌段中进行了深入的型材控制处理的三种凝胶系统的制剂,并通过核心进一步评估了这些系统的轮廓控制效果实验。结果表明,当注射体积达到0.6pV时,最佳轮廓控制系统可以有效地阻断高渗透性核心,对低渗透核对低渗透性核心影响。当注射体积在0.6PV和0.9PV之间的注射体积时,水淹水稳定压力的变化小于8%。它具有良好的堵塞效果,可以提高油回收率超过11%。轮廓控制系统在60℃和80摄氏度之间表现出优异的热稳定性。随着剪切时间的增加,优化的轮廓控制系统的核心堵漏速率降低了小于1.2%,这意味着轮廓控制剂的插入性能在油田的深入型材控制处理过程中受到较小的影响。在大庆油田H块中的这种配置文件控制系统的应用取得了显着的结果。水切削下降4.66%,井组油制品在深入的剖面控制处理后增加了21%。

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