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Field scale history matching and assisted history matching using streamline simulation.

机译:使用流线模拟进行现场规模历史匹配和辅助历史匹配。

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摘要

In this study, we apply the streamline-based production data integration method to condition a multimillion cell geologic model to historical production response for a giant Saudi Arabian reservoir. The field has been under peripheral water injection with 16 injectors and 70 producers. There is also a strong aquifer influx into the field. A total of 30 years of production history with detailed rate, infill well and re-perforation schedule were incorporated via multiple pressure updates during streamline simulation. Also, gravity and compressibility effects were included to account for water slumping and aquifer support. To our knowledge, this is the first and the largest such application of production data integration to geologic models accounting for realistic field conditions. We have developed novel techniques to analytically compute the sensitivities of the production response in the presence of gravity and changing field conditions. This makes our method computationally extremely efficient. The field application takes less than 6 hours to run on a PC.;The geologic model derived after conditioning to production response was validated using field surveillance data. In particular, the flood front movement, the aquifer encroachment and bypassed oil locations obtained from the geologic model was found to be consistent with field observations. Finally, an examination of the permeability changes during production data integration revealed that most of these changes were aligned along the facies distribution, particularly the 'good' facies distribution with no resulting loss in geologic realism.;We also propose a novel assisted history matching procedure for finite difference simulators using streamline derived sensitivity calculations. Unlike existing assisted history matching techniques where the user is required to manually adjust the parameters, this procedure combines the rigor of finite difference models and efficiencies of streamline simulators to perform history matching. Finite difference simulator is used to solve for pressure, flux and saturations which, in turn, are used as input for the streamline simulator for estimating the parameter sensitivities analytically. The streamline derived sensitivities are then used to update the reservoir model. The updated model is then used in the finite difference simulator in an iterative mode until a significant satisfactory history match is obtained.;The assisted history matching procedure has been tested for both synthetic and field examples. The results show a significant speed-up in history matching using conventional finite difference simulators.
机译:在这项研究中,我们应用基于流水线的生产数据集成方法,对一个巨型沙特阿拉伯水库的历史生产响应进行了数百万个单元地质模型的条件处理。该领域一直处于外围注水状态,有16个注入器和70个生产者。大量的含水层涌入田间。在流线模拟过程中,通过多次压力更新,合并了总共30年的生产历史,包括详细的速率,填充井和重新射孔时间表。同样,重力和可压缩性也被包括在内,以解释水的塌落和含水层的支撑。据我们所知,这是将生产数据集成应用于考虑实际田间条件的地质模型的第一个也是最大的应用。我们已经开发出新颖的技术来在重力和不断变化的田间条件下分析计算生产响应的敏感性。这使我们的方法在计算上极为有效。在PC上运行该现场应用程序只需不到6个小时。;使用现场监视数据验证了对生产响应进行调节后得出的地质模型。特别是,从地质模型获得的洪水前移,含水层侵蚀和绕过的石油位置被发现与现场观测结果一致。最后,通过对生产数据整合过程中的渗透率变化的检查发现,这些变化大多数沿相分布排列,尤其是沿良好相分布,而不会造成地质现实性损失。;我们还提出了一种新颖的辅助历史匹配程序使用流线派生的灵敏度计算的有限差分模拟器。与要求用户手动调整参数的现有辅助历史匹配技术不同,此过程结合了有限差分模型的严格性和流线型模拟器的效率来执行历史匹配。有限差分模拟器用于求解压力,通量和饱和度,然后将其用作流线模拟器的输入,以分析性地估计参数灵敏度。然后,使用流线导出的敏感性更新储层模型。然后将更新的模型以迭代方式用于有限差分模拟器中,直到获得令人满意的显着历史匹配为止。辅助历史匹配过程已针对合成示例和现场示例进行了测试。结果表明,使用传统的有限差分模拟器可以大大提高历史记录的匹配速度。

著录项

  • 作者

    Kharghoria, Arun.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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