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Computer Simulation of Compositional Flow Using Unstructured Control Volume Finite Element Methods

机译:非结构化控制体积有限元方法的组分流计算机模拟

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In this paper, we study the computer simulation of gas cycling in a rich retrograde condensate reservoir. Two prediction cases are studied. The first case is gas cycling with constant sales gas removal, and the second case is cycling with some gas sales deferral to enhance pressure maintenance in the early life of this reservoir. In this problem the great majority of cycling takes place at pressure below the dew point pressure, indicating the need for modeling the compositional three-phase, multicomponent flow in the reservoir. This compositional model consists of Darcy's law for volumetric flow velocities, mass conservation for hydrocarbon components, thermodynamic equilibrium for mass interchange between phases, and an equation of state for saturations. The control volume finite element (CVFE) method on unstructured grids is used to discretize the model governing equations for the first time. Numerical experiments are reported for the benchmark problem of the third comparative solution project (CSP) organized by the society of petroleum engineers (SPE). The PVT (pressure-volume-temperature) data are based on a real fluid analysis.
机译:在本文中,我们研究了富逆凝液储层中气体循环的计算机模拟。研究了两个预测案例。第一种情况是气体循环,并具有恒定的除气量,第二种情况是循环气体,并延迟了一些气体的销售量,以增强该油藏早期的压力维持能力。在这个问题中,绝大部分循环都是在低于露点压力的压力下发生的,这表明需要对储层中组成的三相多组分流进行建模。该组成模型由达西定律(关于体积流速),烃组分的质量守恒,相之间质量交换的热力学平衡以及饱和状态方程组成。非结构化网格上的控制体积有限元(CVFE)方法首次用于离散模型控制方程。据报道,对石油工程师协会(SPE)组织的第三个比较解决方案项目(CSP)的基准问题进行了数值实验。 PVT(压力-体积-温度)数据基于真实的流体分析。

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