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Challenges of the Fluid Modeling and Initialization of a Non-Equilibrium Oil Reservoir: Case Study for Field S in Malaysia

机译:非均衡油藏流体建模与初始化的挑战:马来西亚田间研究

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Compositional grading resulting from the gravity segregation in thick reservoirs is a common phenomenon observed especially in volatile oil or gas condensate reservoirs. Same phenomenon is repeatedly encountered for reservoirs with high temperature gradients. It is also not uncommon if compartmentalized reservoirs indicate areal variations in fluid properties. But drastic variation in composition and fluid properties both vertically and laterally in thin to moderate reservoirs where the reservoir seems to be connected based on initial pressure data may denote non-equilibrium conditions. In this study such conditions will be assessed for a Malay basin saturated oil reservoir and the challenges and proposed solutions are presented. The individual available samples from appraisal and early production system (EPS) development wells covering six stacked sands each comprising of four segments are thoroughly analyzed for quality and reliability. The information from fluid samples including finger prints for hydrocarbons and CO2, is integrated with pressure and full PVT data to characterize the fluid in this field. Reconciliation of PVT and well test data was harnessed to achieve to a set of representative samples for each reservoir/segment while considering reasonable compositional grading and rate of bubble point depression. The samples were then scrutinized for reliable experimental data. Various alternatives of non-equilibrium initialization vs. defining multiple equilibrium regions with compositional grading were considered. The pros and cons of each method is discussed in this paper and general hints for selecting appropriate approach is given based on type of reservoir being modeled, the purpose of study and available data. It is shown that a fit-for-purpose approach can be adopted to fulfill the requirements of the FDP while trying to reproduce the reservoir behavior. The role of reservoir management and updating the model regularly as per future performance is emphasized. The non-equilibrium reservoir systems have not been extensively discussed in the industry and limited case studies and corresponding challenges and solutions have been presented. This paper discusses fundamental phenomena encountered in dealing with such systems and presents solutions based on the nature of the problem and project objectives both in theoretical and practical sense and in this regard it is novel.
机译:由厚储存器中的重力偏析产生的成分分级是特别是在挥发油或气体冷凝水储层中观察到的常见现象。对于具有高温梯度的储存器,多次遇到了相同的现象。如果划分的储层表示流体性质的面积变化,则也不少见。但是,组成和流体性质的垂直和横向于中等储存器的变化变化,其中储存器似乎基于初始压力数据连接的储存器可以表示非平衡条件。在本研究中,将评估马来盆地饱和油藏的条件,并提出了挑战和提出的解决方案。来自评估和早期生产系统(EPS)开发井的个体可用样品覆盖六个堆叠砂的井,每个都包含四个段的质量和可靠性。来自包括用于碳氢化合物和CO2的手指印刷的流体样品的信息与压力和全PVT数据集成,以表征该领域中的流体。利用PVT和井测试数据的调节,以实现每种储层/分段的一组代表性样本,同时考虑合理的组成分级和泡沫点抑郁率。然后将样品仔细审查以进行可靠的实验数据。考虑了非平衡初始化的各种替代方案与组成分级的定义多个平衡区域。本文讨论了每种方法的优缺点,并基于正在建模的储层类型,研究和可用数据的目的来提供适当方法的一般提示。结果表明,可以采用适合的方法来满足FDP的要求,同时尝试再现储层行为。根据未来的表现,水库管理和定期更新模型的作用。在行业和有限的案例研究中,非平衡储层系统尚未广泛讨论,并提出了相应的挑战和解决方案。本文讨论了在处理此类系统时遇到的基本现象,并根据问题和实际意义上的问题和项目目标提出解决方案,并在这方面是新颖的。

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