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History Matching Grosmont C Carbonate Thermal Production Performance

机译:历史与GroSmont C碳酸碳酸盐热量生产性能

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The Devonian Grosmont Formation is a bitumen saturated carbonate unit located in northern Alberta. It is considered to be Canada’s second largest unconventional oil resource after the McMurray Formation oil sands. Production from the Grosmont Formation has been tested by a consortium of Unocal, Canadian Superior, AOSTRA, Chevron and other companies between 1970’s to 1980’s with some success and significant learning. Since 2010, Laricina Energy Ltd. and Osum Oil Sands Corp. have started a new wave of testing thermal recovery processes for the Grosmont Formation using horizontal wells. The Grosmont C carbonate reservoir contains vugs and fractures at multiple scales, and thus has a different porosity and permeability network than the clastic oil sands. This paper describes a numerical simulation approach to history matching the performance of one of the pilot wells in order to better characterize reservoir properties such as fractures and vugs at multiple scales and their interactions with the rock matrix. CMG’s STARS dual porosity dual permeability module was used to simulate this complex system. The results of the simulation suggest that small-scale vugs should be combined with the matrix in order to obtain a better history match of the reservoir and production performance. Parameters describing fracture properties have become critical not only in matching the well behavior, but also in matching reservoir thermal responses. Advantages, limitations, and recommendations for using a dual porosity and dual permeability model for understanding a multiple-scale porous and permeability system are also discussed.
机译:Devonian GroSmont形成是位于艾伯塔北部的沥青饱和碳酸盐单位。在McMurray地层油砂后,它被认为是加拿大第二大非传统石油资源。 GroSmont形成的生产已由一份非洲,加拿大优越,Aostra,雪佛龙等公司的成果进行了测试,1970年代至1980年之间,有一些成功和重要的学习。自2010年以来,Laricina Energy Ltd.和Osum油砂公司开始使用水平孔的GroSmont形成的热回收过程的新浪潮。 GroSmont C碳酸盐贮存器在多个尺度上含有Vug和裂缝,因此具有比碎屑油砂的孔隙率和渗透性网络不同。本文介绍了历史匹配的历史的数值模拟方法,以便在多个尺度处更好地表征储层性质,例如裂缝和Vugs及其与岩石矩阵的相互作用。 CMG的恒星双孔隙度双渗透模块用于模拟该复杂系统。模拟结果表明,小型Vugs应与矩阵组合,以获得储层和生产性能的更好历史匹配。描述骨折性能的参数不仅在匹配井行为方面变得至关重要,也变得匹配储层热反应。还讨论了使用双孔隙度和双渗透性模型的优点,限制和建议,以了解多尺度多孔和渗透性系统。

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