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Integrated Production System Modelling and Optimization for Advanced EOR Application in Pre-Salt Offshore Carbonate Reservoir

机译:含盐海上碳酸盐水库先进EOR应用的综合生产系统建模与优化

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Objective/Scope: Applicability of Enhanced Oil Recovery (EOR) processes is gaining interest among offshore operators in recent years. CO2/miscible gas injection and Water Alternating Gas injection (WAG) are the most attractive EOR methods being considered by most offshore operators. Due to limitations imposed by the surface facility, any process optimization done through standalone reservoir simulation could be unreliable as the facility constraints and its effects are neglected. In order to minimize risk and reduce uncertainty, successful modelling and optimization of such projects requires integration of subsurface modelling with surface facility model. In this work, field development and optimization of a complex offshore production system, from a Pre-Salt carbonate reservoir offshore of Brazil is studied. Different field development scenarios, including water flooding, miscible gas injection, and WAG injection, are considered. Compositional fluid model is used in order to correctly model the fluid mixing effects and miscibility. Pressure change and thermal effects are considered in all the facility equipment. The complexities of the surface network, including gas sweetening, compression, and fluid blending are included in the integrated model. A new multi-user, multi-disciplinary Integrated Production System Modelling (IPSM) tool is used to fully-implicitly couple reservoir simulation with surface facility model. Production from the offshore asset is optimized for different development scenarios. The provided IPSM approach optimized operational schemes that were consistent with the constraints of the offshore facility. Additionally, with this new approach, all users from different disciplines were able to collaborate seamlessly, and any possible inconsistencies and discontinuities that could occur due to use of multiple decision making tools were removed. The use of integrated production systems modelling for optimizing EOR schemes in offshore assets, particularly miscible WAG, is proved to provide more robust answers. The complexities and Uncertainties of such processes, for both reservoir and facility models, are successfully studied.
机译:目标/范围:增强储蓄(EOR)流程的适用性近年来越来越多的海上运营商的兴趣。 CO2 /可混溶式气体注入和水交替气体注射(WAG)是大多数海上运营商所考虑的最具吸引力的EOR方法。由于表面设施施加的限制,通过独立储层模拟完成的任何过程优化都可能是不可靠的,因为设施限制和其效果被忽略了。为了最大限度地减少风险,降低不确定性,这些项目的成功建模和优化需要与表面设施模型集成地下建模。在这项工作中,研究了来自巴西海上盐水储层的复杂海上生产系统的现场开发和优化。考虑不同的场开发场景,包括水淹没,可混溶的气体注入和摇头注射。使用组成流体模型,以便正确模拟流体混合效果和混溶性。在所有设施设备中考虑了压力变化和热效果。综合模型中包括表面网络的复杂性,包括气体甜味,压缩和流体混合。一种新的多用户,多学科综合生产系统建模(IPSM)工具用于全面隐含地与表面设施模型进行储层模拟。从海上资产生产针对不同的发展方案进行了优化。提供的IPSM方法优化了与海上设施的约束一致的操作方案。此外,通过这种新方法,来自不同学科的所有用户都能够无缝协作,以及由于使用多种决策工具而可能发生的任何可能发生的不一致性和不连续性。综合生产系统建模用于优化海上资产中的EOR方案,特别是令人溶解的摇头,以提供更强大的答案。成功研究了水库和设施模型这些过程的复杂性和不确定性。

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