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Modeling and Experimental Study of Newtonian Fluid Flow in Annulus

机译:环上牛顿流体流动的建模与实验研究

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A major concern in drilling operations is the proper determination offrictional pressure loss in order to select a mud pump and avoid any serious problems. In this study, a mechanistic model is proposed for predicting the frictional pressure losses of light drilling fluid, which can be used for concentric annuli. The experimental data that were available in the literature and conducted at the Middle East Technical University-Petroleum Engineering (METU-PETE) flow loop as well as computational fluid dynamics (CFD) software are used to verify the results from the proposed mechanistic model. The results showed that the proposed model can estimate frictional pressure losses within a ±10% error interval when compared with the experimental data. Additionally, the effect of the pipe eccentricity on frictional pressure loss and tangential velocity using CFD for laminar and turbulent flow is also examined. It has been observed that pipe eccentricity drastically increases the tangential velocity inside the annulus; especially, the flow regime is turbulent and frictional pressure loss decreases as the pipe eccentricity increases.
机译:钻井作业中的一个主要问题是正确确定标准压力损失,以便选择泥浆泵并避免任何严重的问题。在这项研究中,提出了一种机械模型来预测轻质钻井液的摩擦压力损失,该模型可用于同心环空。文献中提供的并在中东技术大学-石油工程(METU-PETE)流动环路以及计算流体动力学(CFD)软件中进行的实验数据用于验证所提出的机械模型的结果。结果表明,与实验数据相比,该模型可以在±10%误差范围内估计摩擦压力损失。此外,还检查了使用CFD进行层流和湍流时管道偏心对摩擦压力损失和切向速度的影响。已经观察到,管道的偏心距大大增加了环内部的切线速度。特别是,流动状态是湍流的,并且随着管道偏心度的增加,摩擦压力损失减小。

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