首页> 外文期刊>Journal of industrial and engineering chemistry >A 2-D simulation study on CO2 soluble surfactant for foam enhanced oil recovery
【24h】

A 2-D simulation study on CO2 soluble surfactant for foam enhanced oil recovery

机译:二维泡沫增强油回收的二氧化碳可溶性表面活性剂的模拟研究

获取原文
获取原文并翻译 | 示例
           

摘要

This paper probes the transport of CO2 soluble surfactant for foaming in porous media. We numerically investigate the effect of surfactant partitioning between the aqueous phase and the gaseous phase on foam transport for subsurface applications when the surfactant is injected in the CO2 phase. A 2-D reservoir simulation is developed to quantify the effect of surfactant partition coefficient on the displacement conformance and CO2 sweep efficiency. A texture-implicit local-equilibrium foam model is embedded to describe how the partitioning of surfactant between water and CO2 affects the CO2 foam mobility control when surfactant is injected in the CO2 phase. We conclude that when surfactant has approximately equal affinity to both the CO2 and the water, the transport of surfactant is in line with the gas propagation and therefore the sweep efficiency is maximized. Too high affinity to water (small partition coefficient) results in surfactant retardation whereas too high affinity to CO2 (large partition coefficient) leads to weak foam and insufficient mobility reduction. This work sheds light upon the design of water-alternating-gas-plus-surfactant-in-gas (WAG + S) process to improve the conventional foam process with surfactant-alternating-gas (SAG) injection mode during which significant amount of surfactant could possibly drain down by gravity before CO2 slugs catch up to generate foam in situ the reservoir. (C) 2018 Published by Elsevier B.V. on behalf of The Korean Society of Industrial and Engineering Chemistry.
机译:本文探测了多孔介质中发泡的CO2可溶性表面活性剂的运输。在CO 2相中注入表面活性剂时,在物质上研究水相和水相之间的表面活性剂分配对泡沫运输的影响。开发了2-D储库模拟以量化表面活性剂分区系数对位移符合和CO2扫描效率的影响。嵌入纹理隐式的局部平衡泡沫模型以描述水和CO2之间的表面活性剂的分配如何影响CO 2泡沫迁移率控制,当在CO 2相中注射表面活性剂时。我们得出结论,当表面活性剂对二氧化碳和水具有大致相等的亲和力时,表面活性剂的运输与气体繁殖一致,因此扫描效率最大化。对水的亲和力过高(小分区系数)导致表面活性剂延迟,而对CO2(大分配系数)的亲和力过高(大分配系数)导致弱泡沫和不足的迁移率降低。这项工作揭示了在水交交易 - 气体加 - 表面活性剂 - 气体(WAG + S)过程的设计上,以改善具有表面活性剂 - 交替气体(SAG)注射模式的常规泡沫过程,在此期间有大量的表面活性剂在CO2 Sluk赶上以产生泡沫之前,可以在原地储存器产生泡沫之前,可能会通过重力排出。 (c)2018年由elsevier b.v发布。代表朝鲜工程和工程化学学会。

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