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Computation of eddy-current density on ESP motor and well casings under different operating conditions

机译:ESP电动机和油井套管在不同工况下的涡流密度计算

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This paper presents a 2D finite-element analysis of the induced eddy currents on motor and oil well casings of an electrical submersible pump (ESP) oil lifting system. Simulation results revealed that the increase in motor-casing conductivity and/or permeability decreases the eddy-current density on the well casing, contrary to that on the motor casing. Further increase in one or both of these parameters leads to a decrease in both current densities as a result of the skin effect phenomenon. However, the increase of well casing conductivity and/or permeability increases the eddy-current density on the well casing, while that on the motor casing remains unchanged. Increasing the fluid-mixture conductivity does not have any effect on the eddy-current density on the well casing, and for further increase in the fluid conductivity it decreases drastically, contrary to that on the motor casing which remains constant. The higher the current imbalance (including single phasing) and/or motor eccentricity, the higher is the maximum eddy-current density. Consequently, the increase of eddy-current density leads to an increase of the motor and well casings' temperature, where the latter is known to accelerate the corrosion rate. It can be concluded that the design parameters and the construction of the motor and well casings play an important role in their corrosion.
机译:本文介绍了电潜泵(ESP)提油系统的电机和油井套管上的感应涡流的二维有限元分析。仿真结果表明,与电动机套管相反,电动机套管电导率和/或磁导率的增加会降低井套管上的涡流密度。由于集肤效应现象,这些参数之一或两者的进一步增加导致两种电流密度的降低。但是,井筒电导率和/或磁导率的增加会增加井筒上的涡流密度,而电机套管上的涡流密度保持不变。增大流体混合物的电导率对井筒上的涡流密度没有任何影响,并且为了进一步增大流体电导率,与保持恒定的电动机壳体相反,其急剧下降。电流不平衡(包括单相)和/或电动机偏心率越高,最大涡电流密度就越高。因此,涡电流密度的增加导致电动机和井筒温度的升高,已知后者会加速腐蚀速率。可以得出结论,电动机和井筒的设计参数和结构在其腐蚀中起着重要作用。

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