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Design and real-time process optimisation of steam assisted gravity drainage for improved heavy oil recovery.

机译:蒸汽辅助重力排水的设计和实时工艺优化,可提高重油采收率。

摘要

“Introduction to the Canadian Oil Sands”, “Canada’s Oil Sand Industry: An Overview”, “Heavy Oil Technologies”, and so many other topics about heavy oil have become the hotcakes in the oil industry. A number of new projects are in Execute phase for the development of heavy oil assets. This clearly shows the increasing demand for heavy oil. An oil industry is working hard to meet the world oil demand by developing deep water, HPHT, heavy oil, shale sands and all other non-conventional reservoirs but the main challenge is to develop and operate them in a risk free environment.Understanding the reservoir and fluid properties and developing new technologies help the industry to reduce the risk in developing non-conventional fields. A major problem in heavy oil field is to understand the behaviour of heavy oil. The viscous oil flows sluggishly in the formations and hence it is difficult to transport through unconsolidated formations and is very difficult to produce by conventional methods. Viscous oil recovery entails neatly designed enhanced oil recovery processes like Steam Assisted Gravity Drainage and the success of such technologies are critically dependent on accurate knowledge of reservoir, well and fluid properties of oil under variety of pressure and temperature conditions.This research project has provided some solutions to the challenges in heavy oil field development and can help the oil industry to optimise heavy oil production. Detailed experimental understanding of PVT properties has allowed this project to contribute to the knowledge. Reservoir, well and fluid properties were studied thoroughly and demonstrated the criticality of each parameter on the efficiency of Steam Assisted Gravity Drainage.An user friendly SAGD simulator is a big output of this research which allows the user to optimise the heavy oil recovery and enables to do risk assessments quickly during design phase of SAGD. A SAGD simulator is developed.
机译:“加拿大油砂简介”,“加拿大油砂行业:概述”,“重油技术”以及许多其他有关重油的主题已成为石油行业的热门话题。许多新项目正处于执行阶段,以开发重油资产。这清楚地表明对重油的需求在增加。石油工业正在努力开发深水,HPHT,重油,页岩砂和所有其他非常规油藏,以满足世界石油需求,但主要挑战是在无风险的环境中进行开发和运营。流体特性和开发新技术有助于行业降低开发非常规领域的风险。重油领域的主要问题是了解重油的行为。粘性油在地层中流动缓慢,因此难以通过未固结的地层运输,并且非常难以通过常规方法生产。稠油采收需要设计精巧的增强采油工艺,例如蒸汽辅助重力排水,而此类技术的成功关键取决于在各种压力和温度条件下对油的储层,油井和流体性质的准确了解。解决重油油田开发挑战的解决方案,可以帮助石油工业优化重油产量。通过对PVT特性的详细实验了解,该项目可以为这一知识做出贡献。对储层,井和流体性质进行了深入研究,并证明了每个参数对蒸汽辅助重力排水效率的重要性。用户友好的SAGD模拟器是这项研究的重要成果,可让用户优化重油采收率并实现在SAGD的设计阶段快速进行风险评估。开发了SAGD模拟器。

著录项

  • 作者

    Bali Amol Bhagwan;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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