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Post-treatment horizontal hydraulic fracture modeling with integrated chemical tracer analysis, a case study.

机译:结合化学示踪剂分析的后处理水平水力压裂模型,案例研究。

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摘要

As early as the 1950s, the need to track water in various applications, including stream water, sanitary systems, ground water, and oil field water flooding, resulted in the development of chemical tracer technologies. While the utilization of tracer technologies to track water during reservoir development is mature, the use of chemical tracers in unconventional hydraulic fracturing operations is relatively new. With the increasing use of chemical tracers in unconventional settings, questions related to the proper execution, interpretation, and integration of chemical tracer tests arise.;The first part of this research discusses the design and analysis of a tracer study conducted in a section of the Wattenberg Field, Colorado. The results of the tracer study showed that the preferential direction of cross-well tracer flow during hydraulic fracturing reflected the order of completion rather than the geology. However, large geologic features, such as a faulted graben, can facilitate cross-well transport of water-based chemical tracers during fracturing. Minor faults between wells can facilitate cross-well transport of oil-based chemical tracers during production. Furthermore, the percentage of recovered tracers from different intervals along the wellbore varies, which can reflect the contribution of that interval to the net production. Based on the analysis, suggestions on how to conduct a tracer study to obtain high-quality data are provided.;The second part of this research shows how the results of the tracer study can be integrated into a post-treatment hydraulic fracturing model to evaluate production efficiency. Using the fractional production flowback results from the chemical tracer study, hydraulic fractures were calibrated to match the fractional production from each interval. The fracture model provides insight into what the hydraulic fractures look like, potential communication avenues for the chemical tracers, and production efficiency.
机译:早在1950年代,就需要对各种应用中的水进行追踪,包括溪流水,卫生系统,地下水和油田水驱,这导致了化学示踪技术的发展。尽管在储层开发过程中利用示踪剂技术追踪水已经成熟,但在非常规水力压裂作业中使用化学示踪剂还是相对较新的。随着在非常规环境中化学示踪剂使用的增加,出现了与化学示踪剂测试的正确执行,解释和集成有关的问题。本研究的第一部分讨论了在特定部分进行的示踪剂研究的设计和分析。瓦滕伯格球场,科罗拉多州。示踪剂研究结果表明,水力压裂过程中井间示踪剂流动的优先方向反映了完井顺序,而不是地质。但是,较大的地质特征(例如断裂的grab陷)可以促进压裂过程中水基化学示踪剂的跨井运输。井之间的小故障可以促进生产过程中油基化学示踪剂的跨井运输。此外,沿井筒不同间隔采出的示踪剂的百分比也有所不同,这可以反映该间隔对净采出量的贡献。在分析的基础上,提出了如何进行示踪研究以获取高质量数据的建议。本研究的第二部分显示了如何将示踪研究的结果整合到后处理水力压裂模型中进行评估生产效率。使用化学示踪剂研究的分馏产量返排结果,对水力压裂进行了校准,以匹配每个层段的分馏产量。裂缝模型可以洞悉水力裂缝的形貌,化学示踪剂的潜在通信途径以及生产效率。

著录项

  • 作者

    Dang, Angela K.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Petroleum engineering.;Environmental health.
  • 学位 M.S.
  • 年度 2016
  • 页码 82 p.
  • 总页数 82
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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