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Effects of drill string eccentricity on frictional pressure losses in annuli

机译:钻柱偏心对亚林摩擦压力损失的影响

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It has been shown that drill pipe eccentricity can significantly reduce the annular pressure losses and must be taken in to account for accurate prediction of equivalent circulating density (ECD). This study investigates effects of axial flow of Yield-Power-Law (YPL) drilling fluid on frictional pressure losses in eccentric annuli. A numerical model is developed to simulate the laminar flow of yield-power-law fluids in eccentric annular geometries. The governing equations are solved numerically using an implicit finite difference method and employing a non-uniform grid distribution system. The numerical solution yields velocity profile in the annular space, which is integrated to obtain the volumetric flow rate. The frictional pressure losses are calculated using an iterative scheme that is based on convergence of the calculated volumetric flow rate to the given flow rate. Comparing the frictional pressure loss predictions of the model with three previous numerical studies indicates an excellent agreement for the case of non-Newtonian fluids. The numerical model is validated through extensive comparisons between the predicted frictional pressure losses and experimental data derived from the literature. Our analysis indicates excellent agreement between the model prediction and the experimental data. The numerical results conclude that the reduction in frictional pressure losses due to eccentricity is more prominent at high radii ratios. Results of extensive simulation scenarios for yield-power-law fluids are fitted using non-linear regression analysis, which provides a new correlation for prediction of frictional pressure losses of yield-power-law fluids in eccentric annuli. Comparing the predictions of the developed correlation with the published correlation in the literature reveals more accurate estimation of frictional pressure losses for the proposed correlation and hence safer controlled drilling operations.
机译:已经表明,钻孔管偏心可以显着降低环形压力损失,并且必须采用以考虑对等效循环密度(ECD)的精确预测。本研究研究了产量 - 动力法(YPL)钻孔流体对偏心载荷中摩擦压力损失的影响。开发了一种数值模型以模拟偏心环形几何形状中产量 - 动力法流体的层流。使用隐含的有限差分方法和采用非均匀电网分配​​系统来数值求解控制方程。数值溶液产生环形空间中的速度曲线,其集成以获得体积流量。使用基于计算的体积流量的收敛到给定流速来计算摩擦压力损失。比较模型的摩擦压力损失预测与三个先前的数值研究表明非牛顿流体的情况非常一致。通过预测的摩擦压力损失和来自文献的实验数据之间的广泛比较来验证数值模型。我们的分析表明模型预测和实验数据之间的良好一致性。数值结果得出结论,由于偏心率引起的摩擦压力损失在高端比率更加突出。利用非线性回归分析拟合了产量 - 动力法流体的广泛仿真场景,这提供了一种新的偏心云中产量 - 动力法流体摩擦压力损失的新相关性。比较与文献中发表相关性的相关性的预测揭示了提出的相关性的摩擦压力损失的更准确估计,因此更安全控制的钻井操作。

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