首页> 外文会议>Offshore Technology Conference >(OTC 21454)A Successful Story of Integration Geological Characterization, Reservoir Simulation, Assisted History Matching and EOR in a Giant Fractured Granite Basement: A Road Map to Maximize Recovery in Unconventional Reservoirs
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(OTC 21454)A Successful Story of Integration Geological Characterization, Reservoir Simulation, Assisted History Matching and EOR in a Giant Fractured Granite Basement: A Road Map to Maximize Recovery in Unconventional Reservoirs

机译:(OTC 21454)一个成功的集成地质特征故事,储层模拟,辅助历史匹配和巨型裂缝花岗岩地下室的EOR:一种最大限度地储存器恢复的路线图

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Near shore oil reservoirs have become significantly depleted, forcing oil companies to explore the unconventionalreservoirs with huge investments and the latest technology. Among them, naturally fractured reservoirs (NFR) are foundthroughout the world and contain significant amount of oil reserves. Because of the unique of a NFR, there are lots ofuncertainties in exploration and field development of these complex reservoirs.White Tiger is the biggest fractured basement reservoir up to now on the continental shelf of Viet Nam and even theworld. This reservoir has a very complicated geological structure; high temperature (more than 2840F) and closure stress(more than 6,000 psi). The total OIIP of this field reached nearly 4 billion barrels with 6,561 feet of the oil bearing thicknessin granite basement and has been produced by more than 200 wells, with production rate of 180,000bbls/d. Due to thechallenges of geology, these are essential to have successful operations as well as reducing uncertainties and improving theefficiency of oil field management. With a large database collected from initial production stages, the authors developed anintegrated static and dynamic workflow to forecast oil production under several production scenarios for this reservoir. Asuccessful assisted automatic history matching approach was proposed by combining global and local optimization whichcould be effectively accelerate the convergent problem and minimize computation mass of inverse problem, to construct areliable model for complex reservoirs. Then, a series of compositional reservoir model were performed and analyzed byCMGTM simulator in order to evaluate the possibility of polymer flooding in fractured basement reservoir. The results showedpolymer flooding would become an excellent candidate for enhanced oil recovery. Additionally, polymer retentionphenomenon by adsorption on the rock surface and precipitation by high salinity was deeply investigated. An optimum rangeof important factors were determined to reduce the effect of chemical adsorption, it helps minimize mass of chemical loss andimprove economic efficiency of chemical flooding process.
机译:靠近岸石油储油器已经显着耗尽,迫使石油公司探索带有巨大投资和最新技术的无传统的人服务。其中,自然裂缝储层(NFR)是世界的替代,并含有大量的石油储备。由于NFR的独特,这些复杂水库的探索和现场开发中有很多鸟瞰图。当越南越来越多的越南的大陆架上,虎是最大的骨折地下室水库。该水库具有非常复杂的地质结构;高温(超过2840F)和闭合应力(超过6,000 psi)。该领域的OIIP总量达到近40亿桶,含有6,561英尺的油轴承厚度花岗岩地下室,并生产了200多个井,生产率为180,000bbls / d。由于地质学,这些是具有成功的运营至关重要,并降低不确定性并提高油田管理的低效率。通过从初始生产阶段收集的大型数据库,作者在该水库的几个生产方案下开发了一个静态静态和动态工作流程,以预测石油产量。通过组合全球和局部优化提出了组件辅助自动历史匹配方法,该局部优化将有效地加速收敛问题,最大限度地减少逆问题的计算质量,构建复杂储存器的可接收模型。然后,进行了一系列的组成储层模型,并分析了ByCMGTM模拟器,以评估裂缝地下室储层中聚合物泛滥的可能性。结果表明,洪水将成为增强储油的优秀候选者。另外,深受对岩石表面上吸附和高盐度沉淀的聚合物保留脑蛋白。确定重要因素的最佳范围是为了降低化学吸附的影响,有助于最大限度地减少化学损失的质量和化学洪水过程的经济效率。

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