首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Building a Robust Reservoir Model through Full Integration Workflow of Static and Dynamic: A Case Study from a Lower Cretaceous Carbonate Reservoir of a Giant Oil Field, Onshore Abu Dhabi, UAE
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Building a Robust Reservoir Model through Full Integration Workflow of Static and Dynamic: A Case Study from a Lower Cretaceous Carbonate Reservoir of a Giant Oil Field, Onshore Abu Dhabi, UAE

机译:通过静态和动态的完整整合工作流程构建强大的储层模型:以巨大的油田,陆上阿布扎比,阿联酋的碳酸底碳酸盐水库

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An updated geological and dynamic model for a giant Middle East carbonate reservoir was constructed and history matched with the objective of creating an alternative model which is capable of replicating the reservoir production mechanisms and improving predictability, allowing optimizing the field development plan and water injection strategy. Giant Middle East carbonate fields often have long production history and exhibit high reservoir heterogeneity. It is always challenging to get a robust history matched model aligned with geological concepts and dynamic behavior understanding. The objective of this paper is to present an improved and integrated reservoir characterization, modeling and history matching procedure for a giant Lower Cretaceous carbonate reservoir in the Middle East. The applied workflow integrates all available geological data (stratigraphy, depositional facies, and diagenesis), petrophysical data (RCA and minipermeameter data, Petrophysical Group definition, cut-off definition) and the extensive database of dynamic data (long production history, well test, RST, open-hole log saturation over more than 40 years of development drilling, and MICP). The process was initiated with the reservoir review by means of a fully integrated study that allowed having better understanding of the reservoir behavior and production mechanisms. The key heterogeneities (high permeability and intra-dense layers) which control the flow behavior were identified during this process. Geological trend maps were generated to control the distribution of high permeability and intra-dense in the model. Well test data, open-hole logs from development wells and time-lapse saturation logs from observation wells were used to calibrate the trend and permeability log data. A phenomenological model was constructed to test the main factors impacting the production mechanism as identified during the reservoir review. Multiple iterations were performed between the static and dynamic models in a way that allowed a quick and efficient work that is consistent with all disciplines assumptions. Such continuous loop between the dynamic and geological models, with focus on the geological heterogeneities driving the dynamic reservoir behavior, has led to a more robust model capable of replicate the production mechanisms, which represents a major improvement compared to previous model in term of predictability.
机译:构建了巨大中东碳酸盐储层的更新的地质和动态模型,历史与创造一种能够复制储层生产机制的替代模型以及提高可预测性的历史匹配,允许优化现场发展计划和注水策略。巨型中东碳酸盐田经常具有长期生产历史,表现出高储层异质性。获得与地质概念和动态行为理解对齐的强大历史匹配模型始终具有挑战性。本文的目的是提出一种改进的和集成的储层特征,模拟和历史匹配过程,用于中东的巨大白垩纪碳酸盐储层。应用的工作流程集成了所有可用的地质数据(地层,沉积相和成岩作用),岩石物理数据(RCA和MiniPermemeter数据,Petrophysical Group定义,截止定义)和广泛的动态数据数据库(长生产历史,井测试, RST,开孔日志饱和度超过40年的开发钻井和MICP)。通过储层审查,通过完全综合的研究启动了该过程,允许更好地了解储层行为和生产机制。在该过程中鉴定了控制流动行为的关键异质性(高渗透率和致密层)。生成地质趋势图以控制模型中高渗透性和密集内的分布。井测试数据,从观察井的开发井和时间间隔饱和度的露天记录用于校准趋势和渗透性日志数据。构建了一种现象学模型,以测试影响水库审查期间所识别的生产机制的主要因素。在静态和动态模型之间进行多种迭代,以允许与所有学科假设一致的快速有效的工作。这种连续环之间的动态和地质模型之间的连续环,重点是推动动态储存器行为的地质异质性,这导致了能够复制生产机制的更强大的模型,这与预测性相比,与先前的模型相比,这代表了主要改进。

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