Impact of Natural Fractures in Reservoir Modelling and Characterization. Case Study in UAE

J. Mandl, C. Mills, Eissa Al Obaidli, M. Basioni, K. A. Ali, Ahmed Yahya Al Blooshi, N. Belova, E. Arroyo
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Abstract

The offshore Field-A Gas Development Project is an integral part of the Abu Dhabi Deep Gas Project targeting untapped hydrocarbon reserves with priority given to gas reservoirs to satisfy an increasing gas demand and sustain economic growth of Abu Dhabi Emirate. Well test data from Field-A Khuff Formation cannot be modeled solely using a matrix based porosity system and requires the presence of fracture network to give a "mixed" porosity system to explain the observed flow test results. To assess this a subsurface study was initiated to incorporate fractures within the matrix porosity based 3D reservoir model and to examine different methods of populating fracture distributions across the geologic model. The ultimate aim of this work was to more accurately predict gas rates to better understand and mitigate rate uncertainties across a range of development scenarios.
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天然裂缝对储层建模和表征的影响。阿联酋个案研究
海上油田a天然气开发项目是阿布扎比深层天然气项目的一个组成部分,旨在开发未开发的油气储量,优先考虑天然气储层,以满足日益增长的天然气需求,维持阿布扎比酋长国的经济增长。a油田Khuff地层的试井数据不能单独使用基于基质的孔隙度系统进行建模,需要裂缝网络的存在来给出“混合”孔隙度系统,以解释观察到的流动测试结果。为了评估这一点,研究人员开展了一项地下研究,将裂缝纳入基于基质孔隙度的3D储层模型中,并研究了在地质模型中填充裂缝分布的不同方法。这项工作的最终目的是更准确地预测产气速率,从而更好地了解和减轻各种开发方案中产气速率的不确定性。
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