首页> 外文会议>SPE Latin American and Caribbean Petroleum Engineering Conference >Electrical Wellbore Heating in Environmentally Sensitive Llancanelo Field, Argentina
【24h】

Electrical Wellbore Heating in Environmentally Sensitive Llancanelo Field, Argentina

机译:在环境敏感的Llancanelo领域,阿根廷电气井喷加热

获取原文

摘要

Steam injection processes were abandoned due to environmental regulations in Llancanelo heavy oil field. This reservoir consists of a series of interbedded sandstone and conglomerates in cretaceous aged Neuquen Group.Down-hole electrical well bore heating technique,which is insensitive to the environ-mental regulations,was implemented.Despite that electrical heating for heavy oil reservoirs are estab-lished methods for in situ viscosity reductions,the commercialization and wider application of this heating technique required detailed analyses to determine optimal application conditions in horizontal well trajectory design for a heterogeneous reservoir. Recovery factor obtained with natural depletion was less than 0.2%.Viscosity and temperature relationship was the most critical parameter to determine the applicability of the project in the productive interval.In this paper,it has been shown that electrical well bore heating can be an alternative in this environmentally sensitive reservoir with two different oil viscosity layers;Green zone with 11200 cp and Olive zone with 3880 cp at the surface conditions. The impact of the different heating temperature and heating time on additional oil recovery were analyzed for the reservoir rock and fluid properties.Detailed simulation runs were conducted to understand recovery mechanism of convective and thermal conductive processes for well heating.By increasing the well bore temperature from initial 56°C to 100°C,the following results were obtained; 1-An additional oil recovery for Olive zone can be increased up to 110%,on the other hand an additional oil recovery for Green zone can be increased up to 62%,respectively. 2-Energy consumption of 1 MM BTU for Olive zone will lead an additional oil recovery of 6 STB, whereas 1 MMBTU consumption for Green zone will lead an additional oil recovery of 3 STB. 3-Energy rate per horizontal length is in range of 40–60 Watt/ft per the Green zone. 4-Well bore heating will not change the reservoir temperature and viscosity of the oil beyond 30 m far away.
机译:注汽过程中由于Llancanelo稠油油田环保法规抛弃。此贮存器由一系列互砂岩并且在白垩纪老化内乌肯Group.Down孔电井筒加热技术,这是不敏感的ENVIRON智力法规砾岩的,呈implemented.Despite对于重油储层电加热是estab-用于lished方法原位粘度降低,商业化和该加热技术的更广泛的应用所需的详细的分析,以确定在水平井眼轨迹设计最佳使用条件,异构贮存器。与天然耗尽获得的恢复因子小于0.2%.Viscosity与温度的关系是确定在生产interval.In本文项目的适用性最关键的参数,已表明,电井筒加热可替代在此用两个不同的油粘度层环境敏感储存器;与11200 CP和橄榄区与在表面条件下3880厘泊绿色区。不同的加热温度的上附加油回收的影响和加热时间进行分析的储层岩石和流体properties.Detailed模拟运行进行了能够理解以及heating.By对流和热传导性过程的回收机构增加从井孔温度初始56℃至100℃,得到下列结果; 1,一种用于橄榄区附加油采收可以分别增加高达110%,在另一方面为绿色区中的附加油采收可以增加高达62%。为橄榄区1 MM BTU 2-能耗将引线6 STB的附加油回收,而1个为绿色区MMBTU消费将导致3 STB的附加油采收。每水平长度3-能源速率在每绿区40-60瓦特/英尺范围内。 4-井孔加热不会改变油的贮存温度和粘度超出30米远。

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