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Experimental study on horizontal-well multi-thermal fluid stimulation process in offshore heavy oil reservoirs

机译:海上重油储层水平井多热流体刺激过程的实验研究

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摘要

The development of offshore heavy oil is sensitive and complex, which is limited by factors such as platform space, economy, pollution and security, so conventional thermal recovery techniques such as cyclic steam stimulation and steam flooding have difficulty in achieving favorable development effect for offshore heavy oil reservoirs. Horizontal-well multi-thermal fluid stimulation (HW-MTFS) process is a relatively new thermal recovery technique, which combines the multiple advantages of gas injection, horizontal well and thermal recovery process. In this paper, the HW-MTFS physical model was firstly designed. Thereafter, the influences of different factors on steam absorption along horizontal wellbore were studied by sand-packed model experiments. Finally, the development performance of horizontal-well cyclic steam stimulation (HW-CSS) process and horizontal-well multi-thermal fluid stimulation process was compared by two groups of physical experiments. The results indicate that different injection factors significantly influenced the steam absorption along horizontal wellbore. Compared with steam injection, the multi-thermal fluid injection could effectively improve the steam absorption along horizontal wellbore. The HW-MTFS process had a higher oil rate and production, and the recovery of HW-MTFS process was 42% higher than that of HW-CSS in three cycles.
机译:海上重油的发展是敏感的和复杂的,受平台空间,经济,污染和安全等因素有限,因此常规的热恢复技术,如循环蒸汽刺激和蒸汽洪水难以实现近海重型的有利发展效果储油液。水平井多热流体刺激(HW-MTFS)工艺是一种相对较新的热回收技术,它结合了气体注入,水平井和热回收过程的多种优点。本文首先设计了HW-MTFS物理模型。此后,通过砂填充模型实验研究了不同因素对沿水平井眼蒸汽吸收的影响。最后,通过两组物理实验比较了水平孔循环蒸汽刺激(HW-CSS)工艺和水平井多热流体刺激过程的开发性能。结果表明,不同的注射因子显着影响水平井筒的蒸汽吸收。与蒸汽喷射相比,多热流体注入可以有效地改善水平井筒的蒸汽吸收。 HW-MTFS工艺具有更高的油速率和生产,HW-MTFS过程的回收率高于三个循环中的HW-CSS的42%。

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