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首页> 外文期刊>Petroleum Science and Technology >A Mechanistic Model for Predicting Frictional Pressure Losses for Newtonian Fluids in Concentric Annulus
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A Mechanistic Model for Predicting Frictional Pressure Losses for Newtonian Fluids in Concentric Annulus

机译:预测同心环面牛顿流体摩擦压力损失的力学模型。

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摘要

A mathematical model is introduced estimating the frictional pressure losses of Newtonian fluids flowing through a concentric annulus. A computer code is developed for the proposed model. Also, extensive experiments with water have been conducted at Middle East Technical University, Petroleum and Natural Gas Engineering Department Flow Loop and recorded pressure drop within the test section for various flow rates. The performance of the proposed model is compared with computational fluid dynamics (CFD) software simulated annulus flow section and various criteria such as crittendon, hydraulic diameter and slot flow approximation as well as experimental data. The results showed that the proposed model and experimental results are in good agreement for almost all cases when compared with the other criteria and CFD software. Also, the proposed model could estimate the frictional pressure losses for both laminar and turbulent flow regimes within an error range of ±10%.
机译:引入数学模型来估计流过同心环空的牛顿流体的摩擦压力损失。针对所提出的模型开发了计算机代码。此外,在中东技术大学,石油和天然气工程系的“流量环路”中进行了广泛的水实验,并记录了测试段内各种流量的压降。将该模型的性能与计算流体动力学(CFD)软件模拟的环空流截面以及各种标准(例如Crittendon,水力直径和槽流近似值以及实验数据)进行了比较。结果表明,与其他标准和CFD软件相比,所提出的模型和实验结果几乎在所有情况下都吻合良好。同样,提出的模型可以估计层流和湍流状态下的摩擦压力损失,误差范围为±10%。

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