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PDOs EOR Screening Methodology for Heavy-Oil Fractured Carbonate Fields - a Case Study

机译:PDOS EOR筛选重型碳酸盐碳酸盐田的方法 - 一种案例研究

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Petroleum Development Oman’s (PDO) portfolio of heavy-oil, fractured carbonate prospects and fields contains a potentially large number of EOR opportunities, many of which present unique subsurface challenges. In the context of evaluating one such field, an EOR screening approach was developed combining subsurface definition through a tailor-made appraisal campaign, coupled with technical & economic feasibility evaluation of candidate EOR methods and benchmarking against other fields globally. This paper presents the screening workflow that will serve as template for the evaluation of future EOR opportunities in heavy-oil, fractured carbonate discoveries in PDO. At the outset of the reservoir characterization of this field it was recognized that the application of any EOR technique would be challenging. High oil viscosities coupled with shallow depths render it a candidate for thermal EOR and potentially chemical concepts. However, key uncertainties in basic subsurface parameters such as reservoir architecture, matrix permeability, fracture spacing and (low) oil saturations, necessitated further data gathering before feasibility of any recovery mechanism could be concluded. Based on literature surveys and examination of showstopper properties, a first-pass screening of a multitude of thermal and chemical EOR methods was conducted. A probabilistic assessment of key subsurface parameters was conducted against which the candidate EOR techniques were ranked. This resulted in the identification of SAGOGD, CSS, ISC and novel-chemical flooding as the most promising EOR methods. For each of these methods the critical subsurface parameters and their impact were further assessed through the combination of (1) an appraisal campaign that included drilling of new wells, conventional production & pressure interference testing to constrain the uncertainties in these parameters and (2) Fit-for-purpose modeling (analytical analysis, sector modeling and full-field simulation) to check project feasibility. It was found that none of the thermal recovery methods are technically or economically feasible, but chemical methods are being investigated further.
机译:阿曼石油开发公司(PDO)重质油的产品组合,碳酸盐岩裂缝前景和领域包含了大量潜在的EOR机会,其中许多目前唯一地下的挑战。在评估这样一个领域的上下文中,EOR筛选方法的开发,通过量身定制的评价活动相结合地下定义,加上候选EOR方法技术经济可行性评估和全球基准对其他领域。本文介绍了筛选工作流程将其作为模板的未来EOR机会重油的评价,在PDO断裂碳酸盐发现。在这一领域的储层特征的一开始就认识到,任何EOR技术的应用将是一项挑战。再加上深下浅的高油粘度使其热EOR和潜在的化学概念的候选人。然而,在基本地下参数诸如储层结构,基质渗透率,断裂间距和(低)油饱和度,必须进一步数据收集任何恢复机制的可行性前键的不确定性可以得出结论。基于文献的调查和搅局性质的检查,第一遍是进行的热和化学EOR方法的大量的筛选。关键地下参数的概率进行了评估针对该候选人EOR技术进行了排名。这导致SAGOGD,CSS,ISC和新颖的化学驱油是最有前途的EOR方法的鉴定。对于每一个这些方法的关键地下参数和它们的影响通过(1)的评价运动,其中包括新井,现有的制造&压力干扰钻探测试,以约束在这些参数的不确定性和(2)适合的组合物进一步评估 - 用于通用建模(分析分析,行业模型和全油田模拟)检查项目的可行性。结果发现,没有任何的热回收方法在技术上或经济上是可行的,但化学方法正在进一步调查。

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