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A proposed capillary number dependent model for prediction of relative permeability in gas condensate reservoirs: a robust non-linear regression analysis

机译:一种提出的毛细管数依赖性模型,用于预测气体冷凝水储层的相对渗透性:鲁棒非线性回归分析

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摘要

Well deliverability reduction as a result of liquid (condensate) build up in near well regions is an important deal in the development of gas condensate reservoirs. The relative permeability is an imperative factor for characterization of the aforementioned problem. The dependence of relative permeability on the coupled effects of Interfacial Tension (IFT) and flow velocity (capillary number) together with phase saturation is well established in the literature. In gas condensate reservoirs, however, the influence of IFT and velocity on this parameter becomes more evident. The current paper aims to establish a new model for predicting the relative permeability of gas condensate reservoirs by employing the direct interpolation technique. To this end, the regression analysis was carried out using seven sets of literature published experimental data. The validity analysis was executed by utilizing statistical parameters integrated with graphical descriptions. Furthermore, a comparison was carried out between the proposed model and some literature published empirical models. The results of the examination demonstrated that the new model outperformed other correlations from the standpoints of accuracy and reliability.
机译:在近井地区的液体(冷凝水)产生的良好可递送性降低是气体冷凝水储层的发展中的重要事项。相对渗透性是表征上述问题的势不指。在文献中,相对渗透性对界面张力(IFT)和流速(毛细数)的耦合效果的依赖性在文献中得到了很好的建立。然而,在气体冷凝水储存器中,IFT和速度对该参数的影响变得更加明显。目前纸张旨在通过采用直接插值技术来建立一种预测气体冷凝水储层的相对渗透性的新模型。为此,使用七组文献公开的实验数据进行了回归分析。通过利用与图形描述集成的统计参数执行有效性分析。此外,在拟议的模型和一些文献出版的经验模型之间进行了比较。检查结果表明,新模型从准确性和可靠性的观点出现了其他相关性。

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