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首页> 外文期刊>Journal of Petroleum Engineering >CFD Method for Predicting Annular Pressure Losses and Cuttings Concentration in Eccentric Horizontal Wells
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CFD Method for Predicting Annular Pressure Losses and Cuttings Concentration in Eccentric Horizontal Wells

机译:CFD方法预测偏心水平井的环形压力损失和钻屑浓度

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摘要

In oil and gas drilling operations, predictions of pressure losses and cuttings concentration in the annulus are very complex due to the combination of interacting drilling parameters. Past studies have proposed many empirical correlations to estimate pressure losses and cuttings concentration. However, these developed correlations are limited to their experimental data range and setup, and hence, they cannot be applicable to all cases. CFD methods have the advantages of handling complex multiphase flow problems, as well as, an unlimited number of physical and operational conditions. The present study employs the inhomogeneous (Eulerian-Eulerian) model to simulate a two-phase solid-fluid flow and predict pressure losses and cuttings concentration in eccentric horizontal annuli as a function of varying drilling parameters: fluid velocity, diameter ratio (ratio of inner pipe diameter to outer pipe diameter), inner pipe rotation speed, and fluid type. Experimental data for pressure losses and cuttings concentration from previous literature compared very well with simulation data, confirming the validity of the current model. The study shows how reliable CFD methods can replicate the actual, yet complex oil and gas drilling operations.
机译:在油气钻井作业中,由于相互作用的钻井参数的组合,对环空中压力损失和钻屑浓度的预测非常复杂。过去的研究提出了许多经验相关性以估算压力损失和钻屑浓度。但是,这些发达的相关性仅限于它们的实验数据范围和设置,因此,它们不能适用于所有情况。 CFD方法具有处理复杂的多相流问题以及无数物理和操作条件的优点。本研究采用非均质(Eulerian-Eulerian)模型来模拟两相固液流动并预测偏心水平环空中的压力损失和钻屑浓度随钻井参数的变化而变化的函数:流体速度,直径比(内比)管道直径与管道外径之间的关系),管道内转速和流体类型。来自先前文献的压力损失和钻屑浓度的实验数据与模拟数据进行了很好的比较,证实了当前模型的有效性。研究表明,可靠的CFD方法如何能够复制实际但复杂的石油和天然气钻井作业。

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