首页> 外文期刊>Petroleum Science and Technology >Experimental Investigation of Miscible CO_2 Flooding
【24h】

Experimental Investigation of Miscible CO_2 Flooding

机译:混溶CO_2驱的实验研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Management of water alternating gas (WAG) injection projects requires making decisions regarding the WAG ratio, half-cycle-slug size, and ultimate solvent slug size. The impact of these decisions affects the capital cost and ultimate incremental oil recovery. Core flooding runs were conducted on 2 and 4 ft core samples. Injection scheme (continuous gas injection [CGI] vs. WAG), WAG ratio, and slug size were investigated. In addition, miscible WAG flooding as a secondary process was investigated and its efficiency was compared to the conventional tertiary miscible gas flooding. Miscible gas flooding at different miscible WAG parameters (WAG ratio and slug size) indicate that 1:2 WAG ratio at 0.2 PV slug size is the best combination yielding the highest recovery and tertiary recovery factors. Miscible WAG flooding as a secondary process indicated a higher ultimate recovery compared to the conventional tertiary WAG flooding. However, a larger amount of gas injection is consumed particularly in the early stages of the injection process. Miscible CGI mode conducted using n-Decane as oleic phase appears to have better performance than miscible WAG injection in term of recovery. When light Arab crude oil was used as oleic phase, higher recovery was obtained for miscible WAG flooding. The reversal trend seen in is believed to be due to the presence of crude oil, which alters the rock wettability toward an oil-wet condition, preventing the water blockage during the WAG process.
机译:水交替气(WAG)注入项目的管理需要就WAG比率,半循环段塞尺寸和最终溶剂段塞尺寸做出决策。这些决定的影响会影响资金成本和最终的增量采油量。在2英尺和4英尺岩心样品上进行岩心驱油作业。研究了喷射方案(连续气体喷射[CGI]与WAG的关系),WAG比率和段塞尺寸。此外,研究了可混溶的WAG驱油作为第二过程,并将其效率与常规的三次混溶气驱油进行了比较。在不同的可混溶WAG参数(WAG比和段塞尺寸)下进行的混相气体驱替表明,在0.2 PV塞段尺寸下,WAG比为1:2是产生最高回收率和三次采收率的最佳组合。与常规的三次WAG驱替相比,混溶的WAG驱替作为次要工艺表明最终的采收率更高。但是,特别是在喷射过程的早期阶段,消耗了大量的气体喷射。就恢复而言,使用正癸烷作为油相进行的混溶CGI模式似乎比混溶WAG注入具有更好的性能。当将阿拉伯轻质原油用作油相时,WAG混相驱可获得更高的采收率。据认为,这种逆转趋势是由于原油的存在,它改变了岩石向油湿状态的润湿性,从而防止了WAG过程中的水阻塞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号