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Optimization of SAGD Wind-down and Blow-down for Athabasca Oil Sands

机译:Athabasca油砂的SAGD风化和吹拂的优化

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Athabasca is the largest resource accumulation among three major Canadian oil sands reservoirs. Through more than twenty years of research and studies, Steam Assist Gravity Drainage (SAGD) has been proven as an economic viable commercial method to develop Athabasca oil sands. However, because very few of industrial SAGD projects have matured to date, Wind-Down (WD) and Blow-Down (BD) operation strategies are not well understood and more research and study efforts are needed. In this paper the beginning time and gas injection and production rates in WD and BD with pure methane are optimized for an Athabasca oil sands reservoir with numerical simulation. A simplified economic method and assumptions for optimization are presented and applied in this study. Six type wells are selected to capture the complexity of geological architecture (including pay thickness, and permeability and porosity heterogeneities) and fluid characteristics (thief zones) of the investigated reservoir. The optimization is based on the net values of WD and BD with 2D layer cake simulation models. The sensitivity of the net values to gas and bitumen prices is also analyzed. The strategies to optimize WD and BD for compartment areas or full fields are explored in this paper. For the areas without geomodels, a weighting method is proposed and applied. For areas with geomodels single model simulation is recommended if the areas are not large while the type well/pad methodology is suggested if the compartment areas or full fields are too large to simulate with one model. The results of this study indicate that understanding reservoir geology and optimizing WD beginning time are important and necessary to have positive WD economic values. In some cases compromise has to be made in optimization simulation due to the complexity of reservoir, availability of model and limitation of resources, and a practical optimization method with proper simplifications have to be taken. With the optimized WD and BD operation and management strategies the economy of SAGD projects can be improved significantly.
机译:Athabasca是三大加拿大油砂水库中最大的资源积累。通过二十多年的研究和研究,蒸汽辅助引力排水(SAGD)被证明是开发Athabasca油砂的经济可行的商业方法。但是,由于迄今为止,由于迄今为止,迄今为止的工业索拉德项目很少,所以危险(WD)和污水(BD)操作策略并不充分理解,需要更多的研究和研究努力。本文在WD和BD中的开始时间和气体注射和生产率对于具有数值模拟的Athabasca油砂储层优化了纯甲烷。在本研究中介绍和应用了简化的经济方法和假设。选择六种型孔以捕获研究的地质建筑(包括支付厚度和渗透性和孔隙率异质性)的复杂性和研究的储存器的流体特性(窃贼区)。优化基于WD和BD的净值,具有2D层饼仿真模型。还分析了净值对天然气和沥青价格的敏感性。在本文中探讨了优化WD和BD的策略或全场。对于没有地理仪的区域,提出和应用了加权方法。对于带有土工汇区域的区域,建议使用单模孔隙/焊盘方法,如果在舱室区域或完整的字段太大而是用一个模型模拟的类型井/垫方法而建议。本研究的结果表明,了解水库地质和优化WD开始时间是重要的,有必要具有积极的WD经济价值。在某些情况下,必须在储层的复杂性,模型的可用性和资源限制以及具有适当简化的实际优化方法的情况下,必须在优化模拟中进行妥协。通过优化的WD和BD操作和管理策略,可以显着提高SAGD项目的经济。

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