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Non-isothermal, compressible gas flow for the simulation of an enhanced gas recovery application

机译:非等温,可压缩气体流,用于模拟增强的气体回收应用

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摘要

In this work, we present a framework for numerical modeling of CO _2 injection into porous media for enhanced gas recovery (EGR) from depleted reservoirs. Physically, we have to deal with non-isothermal, compressible gas flows resulting in a system of coupled non-linear PDEs. We describe the mathematical framework for the underlying balance equations as well as the equations of state for mixing gases. We use an object-oriented finite element method implemented in C++. The numerical model has been tested against an analytical solution for a simplified problem and then applied to CO _2 injection into a real reservoir. Numerical modeling allows to investigate physical phenomena and to predict reservoir pressures as well as temperatures depending on injection scenarios and is therefore a useful tool for applied numerical analysis.
机译:在这项工作中,我们为将CO _2注入多孔介质的数值模型提供了一个框架,以提高从枯竭油藏的气体采收率(EGR)。从物理上讲,我们必须处理非等温,可压缩气体流,从而形成耦合非线性PDE的系统。我们描述了基本平衡方程以及混合气体状态方程的数学框架。我们使用在C ++中实现的面向对象的有限元方法。该数值模型已经针对简化问题针对解析解进行了测试,然后应用于将CO _2注入到实际油藏中。数值模型可以研究物理现象,并根据注入情况预测储层压力和温度,因此是进行数值分析的有用工具。

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