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Analysis of flow behavior in fractured lithophysal reservoirs

机译:裂缝性岩性储层的渗流行为分析

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This study develops a mathematical model for the analysis of pressure behavior in fractured lithophysal reservoirs. The lithophysal rock is described as a tri-continuum medium, consisting of fractures, rock matrices, and cavities. In the conceptual model, fractures have homogeneous properties throughout and interact with rock matrices and cavities that have different permeabilities and porosities. Global flow occurs through the fracture network only, while rock matrices and cavities contain the majority of fluid storage and provide fluid drainage to the fractures. Interporosity flows between the triple media are described using a pseudosteady-state concept and the system is characterized by interporosity transmissivity ratios and storativity ratio of each continuum. Pressure behavior is analyzed by examining the pressure drawdown curves, the derivative plots, and the effects of the characteristic parameters. Typical pressure responses from fractures, matrices, and cavities are represented by three semilog straight lines; the transitions by two troughs below the stabilization lines in the derivative plots. The analytical solution to the proposed model is further verified using a numerical simulation. The analytical model has also been applied to a published field-buildup well test and is able to match the pressure buildup data.
机译:这项研究建立了一个数学模型,用于分析裂缝性岩石物理储层的压力行为。岩性岩石被描述为三连续介质,由裂缝,岩石基质和空洞组成。在概念模型中,裂缝始终具有均一的特性,并与渗透率和孔隙率不同的岩石基体和空腔相互作用。整体流动仅通过裂缝网络发生,而岩石基质和空洞包含大部分储液,并为裂缝提供了排液。使用伪稳态概念描述了三重介质之间的孔隙率流动,并且该系统的特征在于每个连续体的孔隙率透射率和储能率。通过检查压力下降曲线,导数图和特征参数的影响来分析压力行为。裂缝,基体和型腔的典型压力响应由三个半对数直线表示。在导数图中稳定线下方有两个谷的过渡。使用数值模拟进一步验证了所提出模型的解析解。该分析模型也已应用于已发布的现场增产试井,并且能够匹配压力增高数据。

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