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Numerical Well Testing Interpretation Model and Applications in Crossflow Double-Layer Reservoirs by Polymer Flooding

机译:聚合物驱横流双层油藏数值试井解释模型及应用

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摘要

This work presents numerical well testing interpretation model and analysis techniques to evaluate formation by using pressure transient data acquired with logging tools in crossflow double-layer reservoirs by polymer flooding. A well testing model is established based on rheology experiments and by considering shear, diffusion, convection, inaccessible pore volume (IPV), permeability reduction, wellbore storage effect, and skin factors. The type curves were then developed based on this model, and parameter sensitivity is analyzed. Our research shows that the type curves have five segments with different flow status: (I) wellbore storage section, (II) intermediate flow section (transient section), (III) mid-radial flow section, (IV) crossflow section (from low permeability layer to high permeability layer), and (V) systematic radial flow section. The polymer flooding field tests prove that our model can accurately determine formation parameters in crossflow double-layer reservoirs by polymer flooding. Moreover, formation damage caused by polymer flooding can also be evaluated by comparison of the interpreted permeability with initial layered permeability before polymer flooding. Comparison of the analysis of numerical solution based on flow mechanism with observed polymer flooding field test data highlights the potential for the application of this interpretation method in formation evaluation and enhanced oil recovery (EOR).
机译:这项工作提出了数值测井解释模型和分析技术,以通过利用测井工具通过聚合物驱在错流双层油藏中获得的压力瞬变数据来评估地层。在流变学实验的基础上,并考虑剪切,扩散,对流,不可及的孔体积(IPV),渗透率降低,井筒储存效果和表皮因素,建立了试井模型。然后基于此模型开发类型曲线,并分析参数灵敏度。我们的研究表明,类型曲线具有五段具有不同流动状态的段:(I)井筒存储段,(II)中间流段(瞬态段),(III)径向中流段,(IV)横流段(从低点开始)渗透层至高渗透层),以及(V)系统径向流截面。聚合物驱现场测试表明,我们的模型可以通过聚合物驱准确地确定错流双层油藏的地层参数。此外,还可以通过将解释的渗透率与聚合物驱替之前的初始分层渗透率进行比较,来评估由聚合物驱引起的地层破坏。基于流动机理的数值解分析与观察到的聚合物驱油现场测试数据的比较表明,该解释方法在地层评估和提高采油率(EOR)中的应用潜力。

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