在低渗透油藏中,传统的采油方法往往效果有限。CO2水气交替驱技术以其独特的优势,为提高这类油藏的采收率提供了新思路。本文将深入探讨CO2水气交替驱的关键参数,分析其对采收率的影响,并提出优化方法,以期为油田开发提供科学指导。In l...在低渗透油藏中,传统的采油方法往往效果有限。CO2水气交替驱技术以其独特的优势,为提高这类油藏的采收率提供了新思路。本文将深入探讨CO2水气交替驱的关键参数,分析其对采收率的影响,并提出优化方法,以期为油田开发提供科学指导。In low permeability oil reservoirs, traditional oil extraction methods often have limited effects. The CO2 water-gas intermittent displacement technology, with its unique advantages, provides a new approach to improve the recovery rate of such oil reservoirs. This paper will delve into the key parameters of CO2 water-gas intermittent displacement, analyze their impact on the recovery rate, and propose optimization methods, in order to provide scientific guidance for oilfield development.展开更多
针对水驱稠油开发效果差、采收率较低的问题,在稠油热水驱室内实验研究的基础上发现,冷/热水交替驱稠油的开发效果更好,与同温度的热水驱相比能提高采收率4.5%。进一步深入研究冷/热水交替驱稠油的注入参数,优化注入参数结果为:注入热...针对水驱稠油开发效果差、采收率较低的问题,在稠油热水驱室内实验研究的基础上发现,冷/热水交替驱稠油的开发效果更好,与同温度的热水驱相比能提高采收率4.5%。进一步深入研究冷/热水交替驱稠油的注入参数,优化注入参数结果为:注入热水段塞温度为80℃,冷水和热水段塞比为1∶1,注入速度为0.5 m L/min,采出程度可达到65.1%。分析表明,冷/热水交替驱稠油与热水驱稠油相比,能够提高水的波及体积,并对油藏能够产生一定的震动作用,因此驱替效果更好。展开更多
文摘在低渗透油藏中,传统的采油方法往往效果有限。CO2水气交替驱技术以其独特的优势,为提高这类油藏的采收率提供了新思路。本文将深入探讨CO2水气交替驱的关键参数,分析其对采收率的影响,并提出优化方法,以期为油田开发提供科学指导。In low permeability oil reservoirs, traditional oil extraction methods often have limited effects. The CO2 water-gas intermittent displacement technology, with its unique advantages, provides a new approach to improve the recovery rate of such oil reservoirs. This paper will delve into the key parameters of CO2 water-gas intermittent displacement, analyze their impact on the recovery rate, and propose optimization methods, in order to provide scientific guidance for oilfield development.
文摘针对水驱稠油开发效果差、采收率较低的问题,在稠油热水驱室内实验研究的基础上发现,冷/热水交替驱稠油的开发效果更好,与同温度的热水驱相比能提高采收率4.5%。进一步深入研究冷/热水交替驱稠油的注入参数,优化注入参数结果为:注入热水段塞温度为80℃,冷水和热水段塞比为1∶1,注入速度为0.5 m L/min,采出程度可达到65.1%。分析表明,冷/热水交替驱稠油与热水驱稠油相比,能够提高水的波及体积,并对油藏能够产生一定的震动作用,因此驱替效果更好。