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Interwell connectivity evaluation from wellrate fluctuations: A waterflooding management tool.

机译:从井速波动评估井间连通性:注水管理工具。

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摘要

Using injection and production data, we can evaluate the connectivity between injector and producer well pairs to characterize their interwell regions and provide a tool for waterflood management. The capacitance model (CM) has been suggested as a phenomenological method to analyze the injection and production data for these purposes. Early studies involving reservoir simulation have shown CM to be a valuable tool but also have revealed several shortcomings. Many of these deficiencies have become more transparent in analyzing field data. This work consists of two parts: in the first part, we investigate some of the shortcomings of the CM and attempt to overcome them by modifying the algorithms. In the second part, we relate the problem of interwell connectivity to the rigorous concept of Multiwell Productivity Index (MPI) and provide a semi analytical approach.;We have developed two modifications on the CM: the segmented CM that can be used where bottomhole pressures (BHP) are unknown and may change during the analysis interval, and the compensated CM that overcomes the requirement to rerun the model after adding a new producer or shutting in an existing producer. If both BHP changes and shut-in periods occur, the segmented and compensated CMs can be used simultaneously to construct a single model for a period of data. We show several hypothetical cases and a field case where these modifications generate a more reliable evaluation of interwell connectivity and increase the R2 of the model up to 15%.;On the other hand, the MPI-based approach can predict the reservoir performance analytically for homogeneous cases under specific conditions. In the heterogeneous cases, this approach provides a robust connectivity parameter, which solely represents the reservoir heterogeneity and possible anisotropy and hence allows improved information exchange with the geologist. In addition, this connectivity parameter is insensitive to possible variations of skin factor and changes in number of wells. A further advantage of the new method is the flexibility to incorporate additional information, such as injector BHP, into the analysis process. We applied this approach on several hypothetical cases and observed excellent evaluation of both reservoir performance and connectivity.
机译:利用注入和生产数据,我们可以评估注入井和生产井对之间的连通性,以表征其井间区域,并为注水管理提供工具。已经建议使用电容模型(CM)作为现象学方法来分析用于这些目的的注入和生产数据。涉及储层模拟的早期研究表明,CM是一种有价值的工具,但也存在一些缺点。这些缺陷中的许多缺陷在分析现场数据时变得更加透明。这项工作包括两个部分:第一部分,我们研究CM的一些缺点,并尝试通过修改算法来克服它们。在第二部分中,我们将井间连通性问题与严格的多孔井生产率指数(MPI)概念联系起来,并提供了一种半分析方法。;我们对CM进行了两种改进:分段式CM可用于井底压力的情况(BHP)是未知的,并且可能会在分析间隔期间发生变化,并且补偿的CM克服了添加新生产者或关闭现有生产者后重新运行模型的要求。如果同时发生BHP变化和关闭周期,则可以同时使用分段和补偿的CM来构建一个数据周期的单个模型。我们展示了几种假设情况和现场情况,这些修改产生了井间连通性的更可靠评估,并将模型的R2提高了15%。另一方面,基于MPI的方法可以分析预测油藏性能。在特定条件下的同类案件。在非均质情况下,这种方法提供了可靠的连通性参数,该参数仅表示储层的非均质性和可能的​​各向异性,因此可以改善与地质学家的信息交换。另外,该连通性参数对集肤系数的可能变化和孔数的变化不敏感。新方法的另一个优点是可以灵活地将其他信息(例如注射器BHP)整合到分析过程中。我们在几种假设的情况下采用了这种方法,并观察到了对储层性能和连通性的出色评价。

著录项

  • 作者

    Kaviani, Danial.;

  • 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 2009
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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