首页> 外文学位 >Utilization of carbon dioxide for improving the performance of waterflooding in heavy oil recovery.
【24h】

Utilization of carbon dioxide for improving the performance of waterflooding in heavy oil recovery.

机译:利用二氧化碳改善重油采收中的注水性能。

获取原文
获取原文并翻译 | 示例

摘要

For several years, heavy oil reserves of Western Canada, which are amongst the largest in the world and total more than 5 billion m 3, have been under waterflooding and oil has been produced at very high water-oil-ratios. Despite its shortcomings, waterflooding has been employed because it is relatively a low cost process and is easier to operate compared to other techniques. In many cases waterflooding has been the only easy and low risk option due to the reservoir conditions which have made it impossible for any enhanced oil recovery techniques to be employed. Heavy oil waterflooding is always associated with low recoveries and poor efficiencies and therefore, there is a need for improving the performance of heavy oil waterflooding.;This study consists of twelve core flood tests designed to investigate the effects of CO2 utilization on improving the performance of waterflooding in heavy oil recovery. Two injection methods are used; 1) injection of a slug of 10 to 25% pore volume of CO2 followed by a soak period and then waterflooding, and 2) injection of carbonated water which is prepared by dissolving CO2 in 1% wt. NaCl brine. Experiments were performed at temperatures of 30°C, and at pressures of 500 and 1000 psi. Water injection rates of 1 to 50 ft/day were used to recover heavy oils of 1000 to 2000 cp viscosities.;The results show that, CO2 can be effectively used to make significant improvements in the overall recovery of heavy oil by waterflooding. Post CO2 waterfloodings resulted in incremental recoveries in the range of 5 to 27% of the original oil in place. It was also found that the increase in the volume of the injected CO2 increases the oil recovery. Also, the increase in operating pressure increased the oil recovery. Furthermore, the intermittent injection of water and CO2 resulted in greater recovery improvements compared to the carbonated water injection. It was also found that higher injection rates of water will recover somewhat more oil along with higher volumes of produced water.;Due to its favourable effects, CO2 injection has been accepted in the industry as an effective method of recovery for light to medium oils. But due to the immiscible nature of CO2 and heavy oil, CO 2 injection has not been looked at as a method of recovery improvement in heavy oil reserves of Western Canada. CO2 is highly soluble in both water and oil and therefore, it might be possible to improve the overall heavy oil waterflooding recoveries of these reserves by the utilization of CO2.
机译:几年来,加拿大西部的重油储量一直处于注水状态,这是世界上最大的稠油储量,总量超过50亿m 3,石油的采出率很高。尽管有缺点,但仍采用注水技术,因为它是一种成本较低的工艺,与其他技术相比,操作更容易。在许多情况下,由于储层条件的限制,注水一直是唯一容易且低风险的选择,这使得不可能采用任何增强的采油技术。稠油注水总是伴随着低采收率和低效率的问题,因此,有必要提高稠油注水性能。这项研究包括十二个核心驱油试验,旨在研究利用CO2对改善原油驱油性能的影响。在重油开采中注水。使用两种注射方法; 1)注入10%至25%孔隙体积的CO2的团块,然后浸泡一段时间,然后注水,以及2)注入碳酸水,该碳酸水是通过将CO2溶解在1%wt。氯化钠盐水。实验是在30°C的温度以及500和1000 psi的压力下进行的。注水速率为1到50英尺/天,用于回收粘度为1000到2000 cp的稠油。结果表明,通过注水,CO2可以有效地改善稠油的整体采收率。二氧化碳的注水后采收率提高了到位原始油的5%至27%。还发现,注入的二氧化碳体积的增加会提高采油量。同样,工作压力的增加也增加了油的回收率。此外,与注入碳酸水相比,间歇注入水和CO2可以提高采收率。还发现,较高的注水速率将回收更多的油,同时还会产生更多的采出水。由于其良好的效果,CO 2注入已被工业界接受为轻中油的有效回收方法。但是由于二氧化碳和重油的不混溶性,所以一直没有考虑将二氧化碳注入作为提高加拿大西部重油储量的一种方法。 CO2在水和油中均高度溶解,因此,可以通过利用CO2改善这些储层的整体重油注水采收率。

著录项

  • 作者

    Nasehi Araghi, Majid.;

  • 作者单位

    The University of Regina (Canada).;

  • 授予单位 The University of Regina (Canada).;
  • 学科 Engineering Petroleum.;Energy.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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