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An Efficient Drift-Flux Closure Relationship to Estimate Liquid Holdups of Gas-Liquid Two-Phase Flow in Pipes

机译:一种有效的漂移-通量闭合关系,用于估计管道中气液两相流的持液量

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The reliable predictions of liquid holdup and pressure drop are essential for pipeline design in oil and gas industry. In this study, the drift-flux approach is utilized to calculate liquid holdups. This approach has been widely used in formulation of the basic equations for multiphase flow in pipelines. Most of the drift-flux models have been developed on an empirical basis from the experimental data. Even though, previous studies showed that these models can be applied to different flow pattern and pipe inclination, when the distribution parameter is flow pattern dependent. They are limited to a set of fluid properties, pipe geometries and operational conditions. The objective of this study is to develop a new drift-flux closure relationship for prediction of liquid holdups in pipes that can be easily applied to a wide range of flow conditions. The developed correlation is compared with nine available correlations from literatures, and validated using the TUFFP (Fluid Flow Projects of University of Tulsa) experimental datasets and OLGA (OiL and GAs simulator supplied by SPTgroup) steady-state synthetic data generated by OLGA Multiphase Toolkit. The developed correlation performs better in predicting liquid holdups than the available correlations for a wide range of flow conditions.
机译:液体滞留量和压降的可靠预测对于石油和天然气行业的管道设计至关重要。在这项研究中,利用漂移-通量方法来计算持液率。该方法已广泛用于制定管道中多相流的基本方程式。大多数漂移通量模型都是根据实验数据以经验为基础开发的。即使以前的研究表明,当分布参数取决于流量模式时,这些模型也可以应用于不同的流量模式和管道倾角。它们仅限于一组流体特性,管道几何形状和操作条件。这项研究的目的是开发一种新的漂移-通量闭合关系,以预测管道中的液体滞留量,可以很容易地将其应用于各种流动条件。将开发的相关性与文献中的九种可用相关性进行比较,并使用OLGA Multiphase Toolkit生成的TUFFP(塔尔萨大学流体工程)实验数据集和OLGA(SPTgroup提供的OiL和GAs模拟器)稳态合成数据进行验证。与广泛的流动条件下可用的相关性相比,所开发的相关性在预测液体滞留率方面表现更好。

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