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Pressure Transient Analysis for a Horizontal Well in Heterogeneous Carbonate Reservoirs Using a Linear Composite Model

机译:使用线性复合模型在异构碳酸盐储层中水平孔的压力瞬态分析

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Carbonate reservoirs usually have strong anisotropy. Oil and gas recovery from fractured reservoirs is highly challenging due to complicated mechanisms involved in production from these reservoirs. A horizontal well completed in these reservoirs may extend through multiple zones, including homogeneous, dual-porosity, and triple-porosity formations. Traditional well test models assume that the entire length of a horizontal or multilateral well remains in the same formation with uniform properties. A well test model for pressure transient analysis of horizontal wells extending through a carbonate reservoir consisting of natural fractures, rock matrix, and vugs with different properties is presented in this study. The focus of this study is on dual-porosity (fracture-matrix) and triple-porosity (fracture-matrix-vug) reservoirs, considering the pseudosteady interporosity flows from rock matrix and vugs into fractures. A multizone triple-porosity model was established and solved by using the point source function, Green’s function, and coupling of multiple reservoir sections. The corresponding type curves were developed, and sensitivity analysis was carried out. The type curves of flow stage division reveal that a horizontal well traversing a three-section reservoir including homogeneous, dual-porosity (fracture-matrix)/triple-porosity (fracture-vug-matrix), and homogeneous sections identifies the stages of pseudosteady interporosity flow from matrix and vug into fracture, fracture pseudoradial flow, system linear flow, system pseudoradial flow, and pseudosteady flow occur in sequence. The greater the difference of permeability between the dual-porosity/triple-porosity section and the two homogeneous sections, the more obvious the interporosity flow on the pressure derivative curve. This approach satisfies the need for pressure transient analysis for a horizontal well that traverses two or more regions with distinct properties in heterogeneous carbonate reservoirs.
机译:碳酸盐储层通常具有强烈的各向异性。由于这些水库生产的复杂机制,来自碎屑储层的石油和气体回收极具挑战性。在这些储存器中完成的水平良好可以延伸通过多个区域,包括均匀,双孔隙率和三孔隙率形成。传统的井测试模型假设水平或多边良好井的整个长度保持在具有均匀性质的相同形成。本研究介绍了通过由天然骨折,岩石基质,岩石基质和具有不同性质的碳酸盐储层延伸的水平井的压力瞬时分析的井瞬变分析测试模型。本研究的重点是双孔隙率(骨折 - 基质)和三孔率(骨折 - 基质-Vug)储存器,考虑到假致造合从岩石基质和Vugs流入裂缝中的尖峰型杂刺器。通过使用多个储存器部分的点源功能,绿色功能和耦合来建立和解决多态三孔隙度模型。开发了相应的类型曲线,进行敏感性分析。流动阶段分割的类型曲线揭示了横穿三个储层的水平井,包括均匀,双孔隙率(骨折 - 基质)/三孔隙率(骨折 - Vug-矩阵)和均匀部分识别了假统常杂度的阶段从基质和Vug流入断裂,裂缝伪影流,系统线性流动,系统伪气流,并依次发生伪常流。双孔隙率/三孔隙率截面和两个均匀部分之间的渗透性差异越大,压力衍生曲线上的迁移率越明显。这种方法满足了水平井的压力瞬态分析的需要,其穿过两种或更多个区域,在异构碳酸盐储存器中具有不同的性质。

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