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

M. Singh, S. Dubey, S. Chakraborty
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Abstract

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.
裂缝性基底表征:储层远景分析与资源评价的综合方法
本文提出了一种多领域集成工作流程,将地球物理、井眼地质、裂缝建模和油气系统分析相结合,用于表征和资源评估。将测井图像解释与地震资料相结合,建立了三维裂缝模型,对裂缝基底储层潜力进行了评价。三维裂缝建模采用离散裂缝网络(DFN)方法,图像测井解释和其他裂缝驱动因素作为主要输入。DFN经过升级,可以在三维网格中生成裂缝孔隙度和裂缝渗透率。放大裂缝孔隙度用于预估油气初始在位(PIIP)。在地震解释中识别出大型断层抛掷的地方,进行了多个二维含油气系统建模。油气系统研究有助于识别最富生排烃中心区域,这些区域与跨断层并置相结合,是基底储层充注的主要区域。进一步分析了基底储层的所有要素(即源、储层、封闭、圈闭和运移),圈定了基底储层内的远景区域,具有较高的地质成功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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