Multiphase Flow Behavior Prediction and Optimal Correlation Selection for Vertical Lift Performance in Faihaa Oil Field, Iraq

Um- Albaneen Hamed, Dhifaf Sadeq, H. Mahmud
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Abstract

In the petroleum industry, multiphase flow dynamics within the tubing string have gained significant attention due to associated challenges. Accurately predicting pressure drops and wellbore pressures is crucial for the effective modeling of vertical lift performance (VLP). This study focuses on predicting the multiphase flow behavior in four wells located in the Faihaa oil field in southern Iraq, utilizing PIPESIM software. The process of selecting the most appropriate multiphase correlation was performed by utilizing production test data to construct a comprehensive survey data catalog. Subsequently, the results were compared with the correlations available within the PIPESIM software. The outcomes reveal that the Hagedorn and Brown (HB) correlation provides the most accurate correlation for calculating pressure in FH-1 and FH-3 while the Beggs and Brill original (BBO) correlation proves to be the optimal fit for wells FH-2 and Gomez mechanistic model for FH-4. These correlations show the lowest root mean square (RMS) values of 11.5, 7.56, 8.889, and 6.622 for the four wells, respectively, accompanied by the lowest error ratios of 0.00692%, 0.00033%, 0.00787%, and 0.0011%, respectively. Conversely, Beggs and Brill original (BBO) correlation yields less accurate results in predicting pressure drop for FH-1 compared with other correlations. Similarly, correlations, such as Orkiszewski for FH-2, Duns and Ros for FH-3, and ANSARI for FH-4, also display less accuracy level. Notably, the study also identifies that single-phase flow dominates within the tubing string until a depth of 6000 feet in most wells, beyond which slug flow emerges, introducing significant production challenges. As a result, the study recommends carefully selecting optimal operational conditions encompassing variables such as wellhead pressure, tubing dimensions, and other pertinent parameters. This approach is crucial to prevent the onset of slug flow regime and thus mitigate associated production challenges.
伊拉克费哈伊油田垂直举升性能的多相流行为预测和最佳相关性选择
在石油工业中,由于相关的挑战,油管串内的多相流动力学受到了极大的关注。准确预测压降和井筒压力对于有效建立垂直举升性能(VLP)模型至关重要。本研究的重点是利用 PIPESIM 软件预测位于伊拉克南部 Faihaa 油田的四口油井的多相流行为。在选择最合适的多相相关性的过程中,利用生产测试数据构建了一个全面的勘测数据目录。随后,将结果与 PIPESIM 软件中的相关性进行了比较。结果显示,Hagedorn 和 Brown (HB) 相关性为计算 FH-1 和 FH-3 的压力提供了最准确的相关性,而 Beggs 和 Brill 原始 (BBO) 相关性则证明是 FH-2 井和 FH-4 的 Gomez 机理模型的最佳拟合。这四口井的相关系数均方根(RMS)值最低,分别为 11.5、7.56、8.889 和 6.622,误差率最低,分别为 0.00692%、0.00033%、0.00787% 和 0.0011%。相反,Beggs 和 Brill 原始(BBO)相关性与其他相关性相比,在预测 FH-1 的压降方面产生的结果准确性较低。同样,Orkiszewski 预测 FH-2、Duns 和 Ros 预测 FH-3、ANSARI 预测 FH-4 等相关系数的准确度也较低。值得注意的是,该研究还发现,在大多数油井中,单相流在油管串内占主导地位,直至 6000 英尺深,超过这一深度后,油管串内会出现蛞蝓流,给生产带来巨大挑战。因此,研究建议仔细选择最佳运行条件,包括井口压力、油管尺寸和其他相关参数等变量。这种方法对于防止蛞蝓流机制的出现,从而减轻相关的生产挑战至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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