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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >Using Analytical Solutions in Compositional Streamline Simulation of a Field-Scale CO_2-lnjection Project in a Condensate Reservoir
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Using Analytical Solutions in Compositional Streamline Simulation of a Field-Scale CO_2-lnjection Project in a Condensate Reservoir

机译:解析法在凝析油藏油田规模CO_2注入工程组合流线模拟中的应用

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摘要

This paper applies compositional streamline simulation to model a real field-scale project that is a combination of enhanced condensate recovery and geologic storage of CO_2. These processes are inherently compositional, and detailed compositional fluid descriptions must be used to represent the displacement behavior accurately. We demonstrate that compositional streamline simulation, along with the use of analytical solutions for condensate displacement, is computationally efficient enough to permit high resolution of spatial heterogeneity as well as detailed characterization of the fluid system.rnWe present a simulation study comparing streamline and finite-difference results for 2D and 3D examples to demonstrate that the compositional streamline method is an efficient computational method for modeling CO_2 storage and condensate vaporization in gas reservoirs. Although the streamline method makes many simplifications regarding the effects of gravity and capillary cross-flow, in heterogeneity-dominated systems such as the condensate system presented, comparison of finite-difference and streamline results confirms that these simplifications are reasonable.
机译:本文应用组分流线模拟对真实的油田规模项目进行建模,该项目是结合提高的凝析油回收率和CO_2地质封存能力而建立的。这些过程本质上是组成过程,必须使用详细的组成流体描述来准确表示位移行为。我们证明了合成流线模拟以及冷凝液驱替分析解决方案的使用在计算效率上足以允许高分辨率的空间非均质性和流体系统的详细表征.rn我们目前进行了一项模拟研究,比较了流线和有限差分2D和3D实例的结果表明组合流线法是一种有效的计算方法,可用于对气藏中CO_2的存储和凝结水汽化进行建模。尽管流线方法简化了重力和毛细管错流的影响,但在以异质性为主的系统中,例如冷凝水系统中,有限差分法和流线结果的比较证实了这些简化是合理的。

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