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Fractured Basement Characterization: An Integrated Approach for Play to Prospect Analysis and Resource Assessment of Basement Plays

机译:裂缝地下室表征:用于展望展望分析和地下室扮演资源评估的综合方法

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This paper presents a multidomain integrated workflow that combines geophysics, borehole geology, fracture modeling, and petroleum systems analysis for characterization and resource assessment of basement plays. A 3D fracture model is developed by integrating image log interpretation and seismic data to assess the reservoir potential of fractured basement. The 3D fracture modeling is done using the discrete fracture network (DFN) approach with image log interpretation and other fracture drivers serving as the main input. The DFN is upscaled to generate fracture porosity and fracture permeability properties in a 3D grid. The upscaled fracture porosity is used to estimate the petroleum initially in place (PIIP) for the prospects. Multiple 2D petroleum system modeling is performed where large fault throws are identified from seismic interpretation. The petroleum system study helps in identification of areas with most prolific hydrocarbon generation and expulsion centers, which, coupled with the cross-fault juxtapositions, are the main locales of charging for basement reservoir. Further analysis of all the elements of basement play (i.e., source, reservoir, seal, trap, and migration) is done, and prospective areas within the basement play are delineated with high geological chance of success.
机译:本文介绍了多麦田综合工作流程,将地球物理,钻孔地质,断裂建模和石油系统分析结合了地下室戏剧的表征和资源评估。通过集成图像日志解释和地震数据来开发3D裂缝模型,以评估裂缝地下室的储层潜力。 3D骨折建模是使用离散断裂网络(DFN)方法进行的,使用图像日志解释和作为主输入的其他裂缝驱动器。 DFN被升高以在3D栅格中产生断裂孔隙率和断裂渗透性特性。升高的裂缝孔隙率用于估计最初的岩石(PIIP)的前景。执行多个2D石油系统建模,其中大故障抛出从地震解释识别。石油系统研究有助于鉴定具有大多数碳氢化合物产生和排出中心的区域,即与交叉故障并置,是用于地下室储层充电的主要地区。进一步分析了地下室游戏的所有元素(即,源,水库,密封,陷阱和迁移),并且地下室戏中的潜在区域具有成功的高地质机会划定。

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