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Modeling Non-Equilibrium Mass Transfer Effects for a Gas Condensate Field

机译:用于气体冷凝物场的非平衡传质效应

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To assess the effect of non-equilibrium mass transfer on the productivity of a single well producing from a gas condensate field, a model incorporating non-equilibrium mass transfer effects was implemented into an equation-of-state (EOS) compositional reservoir simulator developed at The University of Texas at Austin. A correlation from the literature was used to ccount for the effect of variables such as gas velocity and diffusion coefficients on the mass transfer coefficient. However, no mass transfer data were available for gas condensates, so a sensitivity study on the mass transfer coefficient was performed. Several simulations have been performed to evaluate the effects of the non-equilibrium mass transfer on the flow behavior inthe region near the wellbore. The results from these runs were compared with those obtained under the local equilibrium assumption. Such comparisons reveal that non-equilibrium phase behavior lead to a feduction in the condensate saturation in the region near the wellbore. The mole fractions for light and heavy components in the oil phase are noticeably defferent. in the high velocity layers, these differences become more significant. in general, non-equilibrium effects lead to slower reductions in well productivity due to the fact that condensate dropout was reduced near the wellbore.
机译:为了评估非平衡质量转移对来自气体冷凝物场的单个良好生产的生产率的影响,将不平衡传质效应的模型实施为在开发的状态方程(EOS)组成储层模拟器中德克萨斯大学奥斯汀。从文献中的相关性用于COUNT用于变量的效果,例如气体速度和扩散系数对传质系数的影响。然而,没有用于气体缩合物的传质数据,因此进行了对传质系数的灵敏度研究。已经进行了几种模拟以评估非平衡质量转移对井筒附近的流动行为的影响。将这些运行的结果与在局部均衡假设下获得的结果进行了比较。这种比较揭示了非均衡相行为导致在井筒附近的区域中的凝结物饱和的联系。在油相中的轻质和重组分的摩尔级分明显脱节。在高速层中,这些差异变得更加重要。通常,由于井筒附近降低了冷凝物辍学,因此非平衡效果导致良好的生产率较慢降低。

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