首页> 外文期刊>Journal of Energy Resources Technology >Experimental Study and Application of Steam Flooding for Horizontal Well in Ultraheavy Oil Reservoirs
【24h】

Experimental Study and Application of Steam Flooding for Horizontal Well in Ultraheavy Oil Reservoirs

机译:超重油油藏水平井蒸汽驱实验研究与应用

获取原文
获取原文并翻译 | 示例
           

摘要

Based on the ultraheavy oil area in AL-1 Block, Shengli Oilfield, China, a two-dimensional (2D) high-temperature-high-pressure (HTHP) visualized scaled physical simulation system was constructed to investigate intensively oil displacement mechanisms underlying steam flooding for horizontal well at different development stages. The results indicated that whole process is divided into three phases: water extraction phase, steam effective displacement phase, and steam breakthrough phase. Different phases nave different oil displacement mechanisms. These differences are caused mainly by the synthetic actions of horizontal displacement and vertical drainage. A series of physical experiments were conducted to evaluate the optimal parameters affecting the development effects of steam flooding for horizontal wells. The results indicated that the development effect at the pressure of 5 MPa is better than that at 7 MPa when the steam dry ness at the bottom of the well was 0.6; the steam dryness at the bottom should be kept above 0.4; the steam chamber was fully expanded at the injected intensity of steam of 1.9 ton/(d. ha. m). Increasing steam dryness under high-pressure conditions can facilitate an effective development. The results were successfully used to guide 18 horizontal wells from AL-1 Block, and the data collected here may provide important guidance for steam flooding in heavy or ultraheavy oil reservoir.
机译:基于中国胜利油田AL-1区块的超重油区,构建了二维(2D)高温高压可视化尺度物理模拟系统,以深入研究蒸汽驱下的驱油机理。处于不同开发阶段的水平井。结果表明,整个过程分为三个阶段:水提取阶段,蒸汽有效驱替阶段和蒸汽突破阶段。不同的相具有不同的驱油机理。这些差异主要是由水平位移和垂直排水的综合作用引起的。进行了一系列物理实验,以评估影响水平井蒸汽驱开发效果的最佳参数。结果表明,井底蒸汽干燥度为0.6时,在5 MPa压力下的开发效果好于在7 MPa压力下的开发效果。底部蒸汽干燥度应保持在0.4以上;蒸汽室在注入的蒸汽强度为1.9吨/(d。ha。m)时完全膨胀。在高压条件下增加蒸汽干燥度可促进有效开发。该结果成功地用于指导AL-1区块的18口水平井,此处收集的数据可能为重油或超重油藏中的蒸汽驱提供重要的指导。

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