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Gas-Assisted Gravity Drainage - A New Process for CO2 Sequestration and Enhanced Oil Recovery

机译:气体辅助重力排水 - 二氧化碳封存的新方法和增强的采油

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The current commercial practice of gas-based enhanced oil recovery processes involves either continuous gas injection (CGI) or Water-Alternating-Gas (WAG) injection. Over 60 commercial projects in West Texas and other parts of the world have amply demonstrated that these CGI and WAG processes have been technically successful and commercially profitable. However, the oil recoveries from the CGI and WAG processes fall in the range of 5- 15% of the remaining oil. The Gas-Assisted Gravity Drainage (GAGD) process, invented and patented at LSU, has yielded oil recoveries in the range of 65 - 95% in laboratory experiments conducted at realistic reservoir conditions. The GAGD process involves utilizing several vertical wells for injection of CO2 in addition to drilling long horizontal wells for production. Injected CO2 accumulates at the top of the payzone due to gravity segregation and displaces oil, which drains to the horizontal producer. This maximizes the volumetric sweep efficiency. The gravity segregation of CO2 also helps in delaying, or even eliminating, CO2 breakthrough to the producer as well as preventing the gas phase from competing for flow with oil. Thus GAGD enables sequestering injected CO2 in addition to yielding much higher recoveries of trapped oil from depleted reservoirs.
机译:目前基于天然气的增强的油回收过程的商业实践涉及连续气体注射(CGI)或水交交易 - 气体(WAG)注射。在西德克萨斯州西德克萨斯州和世界其他地区超过60个商业项目充分展示了这些CGI和WAG进程在技术上成功且商业上有利可图。然而,来自CGI和WAG过程的石油回收率下降在剩余油的5-15%的范围内。在LSU的储气引力引流(GAGD)过程中,在LSU中进行了专利,在实际储层条件下进行的实验室实验中产生了65-95%的水回收率。除了钻井长水平井进行生产之外,GAGD工艺还包括用于注射CO 2的几个垂直孔。注入的CO2由于重力隔离和取代油而在Payzone的顶部积聚,从而排放到水平生产商。这最大化了体积扫描效率。 CO2的重力偏析也有助于延迟,甚至消除生产者的二氧化碳突破,以及防止气相竞争与油流量的竞争。因此,除了产生从耗尽的储层的捕获的油的捕获的油的更高回收率之外,GAGD还能够过隔离注射的CO 2。

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