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Water Injectivity Tests on Multilayered Oil Reservoirs

机译:多层储油储层的水注射试验

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Completion of water injection wells directly into production oil zone has become a common practice on offshore developmentprojects. Hence, injectivity tests started to play an important role for reservoir management of these fields. In an injectivity test asingle phase (water) is injected continuously for a certain period of time in an oil saturated zone followed by a falloff period.Though single-phase flow of a slightly compressible fluid analysis methods are well documented in literature, transient two-phasesolutions and analysis techniques need further development. Analytical solutions that model pressure behavior during a singlelayer injectivity test were recently presented in literature. This paper presents a new analytical solution for a vertical waterinjection well completed in a layered oil reservoir of infinite extent. To the best authors’ knowledge, the proposed solution was notpresented before. Two phase immiscible displacement of oil by water in a multilayer reservoir is modeled by a system of partial differentialequations. This system is weakly non-linear and can be decoupled by assuming steady-state conditions in the two-phase region.The solution is then obtained by the method of characteristics on the two-phase region coupled with the infinite acting single phaseradial flow solution valid for the oil region. The solution derived in this work can be used to compute the wellbore pressure,injection rates and the water front for each individual layer without resorting of a numerical flow simulator. Parameter estimationfrom field data can be obtained from the proposed solution if a production logging rate profile is available. Two synthetic examples are used to verify the solution derived in this work. The first example considers the behavior of a two-layer reservoir whereas in the second case a reservoir with seven layers is analyzed. The wellbore pressure is compared to a finitedifference simulator. An excellent agreement is obtained for both examples.
机译:直接进入生产油区的注水井已成为海上发展的常见做法。因此,对这些领域的水库管理开始发挥重要作用。在注射试验中,在油饱和区内连续注入一段时间(水),然后在油饱和区中进行一段时间,然后进行衰减期。虽然在文献中有略微可压缩的流体分析方法的单相流量齐全,瞬态两者PHAstions和分析技术需要进一步发展。最近在文献中介绍了单表单仪注射试验期间的模型压力行为的分析解决方案。本文介绍了在无限程度的分层油储层中完成的垂直滑腹部良好的新分析解决方案。为了最好的作者的知识,拟议的解决方案以前尚未推出。多层储层中的水通过水分中的两种相加的油位移由部分差异化系统进行建模。该系统是弱非线性的,并且可以通过假设两相区域中的稳态条件来解耦。然后通过与无限作用单个Phaseradial流程解决有效的两相区域上的特性方法获得解决方案对于石油区。在该工作中衍生的溶液可用于计算每个单层的井眼压力,注射速率和水面,而不借用数值流动模拟器。如果可以从所提出的解决方案可用,则可以从所提出的解决方案获得参数估计。两个合成实例用于验证在该工作中导出的溶液。第一示例考虑了双层储存器的行为,而在第二种情况下分析具有七层的储存器。将井筒压力与Finitedifferifferififer模拟器进行比较。两个例子获得了很好的协议。

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