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Understanding reservoir engineering aspects of shale oil development on the Alaska North Slope.

机译:了解阿拉斯加北坡页岩油开发的油藏工程方面。

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摘要

Horizontal drilling and multi-stage hydraulic fracturing have made the commercial development of nano-darcy shale resources a success. The Shublik shale, a major source rock for hydrocarbon accumulations on the North Slope of Alaska, has huge potential for oil and gas production, with an estimated 463 million barrels of technically recoverable oil.;This thesis presents a workflow for proper modeling of flow simulation in shale wells by incorporating results from hydraulic fracturing software into hydraulic fracture flow modeling. The proposed approach allows us to simulate fracture propagation and leak-off of fracturing fluid during hydraulic fracturing. This process honors the real proppant distribution, horizontal and vertical variable fracture conductivity, and presence of fracturing fluid in the fractures and surrounding matrix. Data from the Eagle Ford Shale in Texas was used for this modeling which is believed to be analogous to Alaska´s Shublik shale.;The performance of a single hydraulic fracture using a black oil model was simulated. Simulation results showed that for the hydraulically fractured zone, the oil recovery factor is 5.8% over thirty years of production, to an assumed economic rate of 200 STB/day. It was found that ignoring flowback overestimated oil recovery by about 17%. Assuming a constant permeability in the hydraulic fracture plane resulted in overestimation of oil recovery by almost 25%. The conductivity of the unpropped zone affected the recovery factor predictions by as much as 10%. For the case investigated, about 25% of the fracturing fluid was recovered during the first 2 months of production; in total, 44% of it was recovered over thirty years. Permeability anisotropy was found to have a significant effect on the results.;These results suggest that assuming a constant conductivity for the fractures and ignoring the presence of water in the fractures and the surrounding matrix leads to overestimation of initial production rates and final recovery factors. In addition, the modified workflow developed here more accurately and seamlessly integrates the modeled induced fracture characteristics in the reservoir simulation of shale resource plays.
机译:水平钻探和多阶段水力压裂成功地实现了纳西达西页岩资源的商业开发。 Shublik页岩是阿拉斯加北坡油气成藏的主要烃源岩,具有巨大的油气生产潜力,估计有4.63亿桶可技术开采的石油。通过将水力压裂软件的结果整合到水力压裂流动模型中,从而在页岩井中进行压裂。所提出的方法使我们能够模拟水力压裂过程中压裂液的裂缝扩展和泄漏。该过程遵循了真正的支撑剂分布,水平和垂直可变的裂缝导流能力以及裂缝和周围基质中存在压裂液的特点。该模型使用了得克萨斯州Eagle Ford页岩的数据,该数据被认为类似于阿拉斯加的Shublik页岩。;使用黑油模型模拟了单个水力压裂的性能。模拟结果表明,对于水力压裂区,在三十年的生产中,油的采收率为5.8%,假定的经济增长率为200 STB /天。结果发现,忽略回流,高估了大约17%的采油量。假设在水力压裂面上渗透率恒定,则会导致石油采收率高估了将近25%。未支撑区域的电导率对回收率预测的影响高达10%。对于所调查的案例,在生产的前两个月中,约有25%的压裂液得到了回收。总共有44%是在30年内被回收的。发现渗透率各向异性对结果有显着影响。这些结果表明,假设裂缝具有恒定的电导率,而忽略裂缝和周围基质中水的存在,则会导致高估初始生产率和最终采收率。此外,这里开发的改进工作流程可以更准确,无缝地将建模的诱导裂缝特征整合到页岩资源库的油藏模拟中。

著录项

  • 作者

    Zanganeh, Behnam.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Engineering Petroleum.;Petroleum Geology.
  • 学位 M.S.
  • 年度 2014
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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