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Prediction of frictional pressure loss for multiphase flow in inclined annuli during Underbalanced Drilling operations

机译:欠平衡钻井作业中倾斜环空中多相流动的摩擦压力损失预测

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摘要

In Underbalanced Drilling (UBD) method, it is difficult to predict the equivalent circulation density due to co-existence of three phases which are air, cuttings and drilling fluid. This study presents the application of a developed model inspired from a novel intelligent algorithm namely radial basis function optimized by genetic algorithm (GA-RBF) algorithm to calculate frictional pressure loss of two-phase gasified drilling fluid flow along with cutting as the third phase in inclined wellbore portions. The suggested approach was conducted to extensive data reported in literature and was based on Rate of Penetration (ROP), wellbore inclination, pipe rotation and in situ flow rate of each phase. The results of this study show that the proposed model could reproduce the experimental frictional pressure loss data to an acceptable accuracy due to high correlation coefficient (R 2?>?0.99) and very small values of average absolute relative deviation (AARD) (2.166726), standard deviation (STD) (0.038222) and root mean square error (RMSE) (0.008783). Results of this study could couple with commercial drilling simulators to accurately predict the frictional pressure loss of three phase flow.
机译:在欠平衡钻井(UBD)方法中,由于空气,岩屑和钻井液这三个阶段的共存,很难预测等效循环密度。本研究提出了一种开发模型的应用,该模型受新型智能算法(即遗传算法优化的径向基函数)(GA-RBF算法)的启发,用于计算两相气化钻井液流的摩擦损失,并以切削为第三相。倾斜的井眼部分。建议的方法是根据文献报道的大量数据进行的,并且基于每个阶段的渗透率(ROP),井眼倾角,管道旋转和原位流速。这项研究的结果表明,由于相关系数高(R 2?>?0.99)且平均绝对相对偏差(AARD)值很小(2.166726),所提出的模型可以将实验摩擦压力损失数据复制到可接受的精度。 ,标准偏差(STD)(0.038222)和均方根误差(RMSE)(0.008783)。这项研究的结果可以与商业钻井模拟器相结合,以准确预测三相流的摩擦压力损失。

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