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Development and application of capacitance-resistive models to water/carbon dioxide floods.

机译:电阻抗性模型在水/二氧化碳洪水中的开发和应用。

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摘要

Quick evaluation of reservoir performance is a main concern in decision making. Time-consuming input data preparation and computing, along with data uncertainty tend to inhibit the use of numerical reservoir simulators. New analytical solutions are developed for capacitance-resistive models (CRMs) as fast predictive techniques, and their application in history-matching, optimization, and evaluating reservoir uncertainty for water/CO2 floods are demonstrated. Because the CRM circumvents reservoir geologic modeling and saturation-matching issues, and only uses injection/production rate and bottomhole pressure data, it lends itself to rapid and frequent reservoir performance evaluation.;This study presents analytical solutions for the continuity equation using superposition in time and space for three different reservoir-control volumes: (1) entire field volume, (2) volume drained by each producer, and (3) drainage volume between an injector/producer pair. These analytical solutions allow rapid estimation of the CRM unknown parameters: the interwell connectivity and production response time constant. The calibrated model is then combined with oil fractional-flow models for water/CO2 floods to match the oil production history. Thereafter, the CRM is used for prediction, optimization, flood performance evaluation, and reservoir uncertainty quantification. Reservoir uncertainty quantification is directly obtained from several equiprobable history-matched solutions (EPHMS) of the CRM. We validated CRM's capabilities with numerical flow-simulation results and tested its applicability in several field case studies involving water/CO2 floods.;Development and application of fast, simple and yet powerful analytic tools, like CRMs that only rely on injection and production data, enable rapid reservoir performance evaluation with an acceptable accuracy. Field engineers can quickly obtain significant insights about flood efficiency by estimating interwell connectivities and use the CRM to manage and optimize real time reservoir performance. Frequent usage of the CRM enables evaluation of numerous sets of the EPHMS and consequently quantification of reservoir uncertainty. The EPHMS sets provide good sampling domains and reasonable guidelines for selecting appropriate input data for full-field numerical modeling by evaluating the range and proper combination of uncertain reservoir parameters. Significant engineering and computing time can be saved by limiting numerical simulation input data to the EPHMS sets obtained from the CRMs.
机译:快速评估储层性能是决策中的主要问题。费时的输入数据准备和计算以及数据的不确定性往往会限制数字储层模拟器的使用。针对电容抗性模型(CRM)开发了新的分析解决方案作为快速预测技术,并展示了它们在历史匹配,优化和评估水/ CO2洪水储层不确定性中的应用。由于CRM绕开了油藏地质建模和饱和度匹配问题,并且仅使用注入/生产速率和井底压力数据,因此可以快速,频繁地进行油藏性能评价。和三个不同油藏控制体积的空间:(1)整个油田体积,(2)每个生产者排出的体积,和(3)一对注入器/生产者之间的排出体积。这些分析解决方案可以快速估算CRM未知参数:井间连通性和生产响应时间常数。然后将校准后的模型与油分流模型结合用于水/ CO2驱油,以匹配石油生产历史。此后,CRM用于预测,优化,洪水性能评估和水库不确定性量化。可从CRM的几种等价历史匹配解决方案(EPHMS)直接获得储层不确定性量化。我们使用数值流模拟结果验证了CRM的功能,并在涉及水/ CO2洪水的多个现场案例研究中测试了其适用性。快速,简单但功能强大的分析工具的开发和应用,例如仅依赖注入和生产数据的CRM,能够以可接受的精度进行快速油藏性能评估。现场工程师可以通过估算井间连通性来快速获得有关洪水效率的重要见解,并使用CRM来管理和优化实时油藏性能。 CRM的频繁使用可以评估许多套EPHMS,从而量化储层的不确定性。 EPHMS集通过评估不确定储层参数的范围和适当组合,为全油田数值模拟选择合适的输入数据提供了良好的采样域和合理的指导原则。通过将数值模拟输入数据限制为从CRM获得的EPHMS集,可以节省大量的工程和计算时间。

著录项

  • 作者

    Sayarpour, Morteza.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

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