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Optimizing Waterflood Management in a Giant UAE Carbonate Oil Field Using Simulation-Based Streamlines

机译:利用基于仿真的流线优化巨大碳酸盐油田的水运管理

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Streamlines have been acknowledged as a powerful tool for modeling and optimizing waterfloods in oil reservoirs.Streamlines provide visualization of reservoir fluid flow and a unique way to conceptualize and quantify injector-producer well connectivity.Well allocation factors(WAFs)between injectors and producers as well as injection efficiency can be calculated and used to optimize water injection and reduce injection water cycling while focusing on maximizing oil recovery.The objective of this study was to develop a methodology,tool,and workflow for optimizing pattern waterflood management and to demonstrate application in a giant offshore carbonate reservoir.This methodology utilizes history- matched simulation models to generate streamlines from the pressure field and fluxes computed by a finite-difference reservoir simulator,EMpower.A finite-difference simulator is more rigorous than stream- line simulators in terms of its ability to model complex fluid flow,and therefore,provides a more realistic solution.The streamlines thus obtained take into account the detailed geology,well locations,phase behavior,and flow behavior of the history-matched models.This methodology utilizes the concept of pair “injection efficiency”(IE)and pair“voidage replacement ratio”(VRR)which was necessary for the subject giant oil field and is equally applicable to other fields. The optimization process is started by generating streamlines and associated WAFs at the current time using the simulation model.The injection efficiency is calculated and injector-producer well pairs are identified with high and low IE.New producer rates are then calculated by increasing producer rates in high IE well pairs and decreasing rates in low IE well pairs based on a weight factor.The injector rates are then calculated by applying a target VRR to each individual well pair.This results in redistribution of injection and production rates in a more balanced/optimal manner.The process is repeated at regular intervals(e.g.,yearly or quarterly)while simulation is run in the prediction mode.Results show higher total oil production rates or lower water production and water injection rates.The WOR versus cumulative oil production clearly demonstrates that the overall injection efficiency increases as the optimization process is progressed.
机译:流线已被确认为在油reservoirs.Streamlines建模和优化水驱的强有力的工具提供注入井和生产以及储层之间的流体流动和一种独特的方式来概念化和定量注入 - 生产井connectivity.Well分配因子(WAFS)的可视化作为注入效率可以被计算并用于优化注水和减少注射水循环而着眼于最大化油recovery.The目标本研究的是开发一种方法,工具和工作流用于优化图案注水管理和证明在一个应用巨型海上碳酸盐reservoir.This方法利用历史拟合仿真模型,以生成从所述压力场的流线和通量通过有限差分油藏模拟器计算,EMpower.A有限差分模拟器比线于流模拟器更严格来讲其能力复杂流体流进行建模,并且因此,提供了从而更逼真solution.The流线获得考虑到详细地质,孔位置,相行为,和流动历史匹配models.This方法论行为利用对“注入效率”(IE)的概念和对“空隙率置换率”(VRR),这是必要的受试者巨型油田和同样适用于其它领域。优化过程是通过使用模拟model.The注入效率在当前时间产生流线和相关联的Web应用防火墙开始计算和注射器-生产井对与高和低生产者IE.New率识别,然后通过在提高生产率计算高IE以及对以及基于重量factor.The喷射速率低IE以及对减少率然后通过以更平衡/最佳在注入和生产速率再分配施加目标VRR到每个单独的井pair.This结果计算manner.The过程被重复以规则的间隔(例如,每年或每季度),同时模拟在预测运行mode.Results表现出较高的总的油的生产速率或更低的水的生产和注水rates.The WOR对累积产油清楚地表明作为优化处理的进展的总体注入效率增加。

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