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首页> 外文期刊>Journal of Energy Resources Technology >Investigation on Tripping in Magnetic Generator in Steam-Assisted Gravity Drainage Wells Based on Numerical Simulation
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Investigation on Tripping in Magnetic Generator in Steam-Assisted Gravity Drainage Wells Based on Numerical Simulation

机译:基于数值模拟的蒸汽辅助重力排水井磁力发生器跳闸研究

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摘要

Magnetic Guidance Technology can meet the precise measurement requirements when drilling steam-assisted gravity drainage (SAGD) oil wells. Magnetic generator is a key part in the Magnetic Guidance Technology. When magnetic generator is tripped into horizontal well, pump pressure and passing capacity of the magnetic source generator in the curved section need to be analyzed. So, a mathematical model of tripping in the magnetic generator is established. If curvature radius, deviation angle, and friction factor are known, the forces acting on the magnetic generator in different positions could be calculated. The finite element (FE) results show that: (1) with depth increasing in the curved section, the equivalent stress on the magnetic generator increases in a fluctuating manner, the contact area, friction drag, and energy loss increase. (2) The greater the hole curvature, the greater tripping in force and the higher pump pressure are needed. The lower friction coefficient is favorable to tripping in the magnetic generator. (3) The friction between the magnetic generator and tubing wall in the horizontal section is much less than that in the curved section. Field applications have shown that the maximum downforce is close to the result of finite element analysis. The research results provide a reasonable reference basis for smooth running of magnetic source generators with different trajectory conditions.
机译:磁力引导技术可以满足钻蒸汽辅助重力排水(SAGD)油井时精确的测量要求。磁发电机是磁引导技术的关键部分。当磁力发生器跳进水平阱中时,需要分析弯曲部分中磁源发生器的泵压力和传递容量。因此,建立了磁力发生器中跳闸的数学模型。如果已知曲率半径,偏差角和摩擦因子,则可以计算作用在不同位置的磁发生器上的力。有限元(Fe)结果表明:(1)在弯曲部分中深度增加,磁发生器上的等效应力以波动的方式增加,接触面积,摩擦阻力和能量损失增加。 (2)孔曲率越大,需要较大的跳闸力和较高的泵压力。较低的摩擦系数有利于在磁发生器中跳闸。 (3)水平截面中的磁发电机和管壁之间的摩擦远小于弯曲部分中的摩擦。现场应用已经表明,最大下压度接近有限元分析的结果。研究结果为具有不同轨迹条件的磁源发生器的平稳运行提供了合理的参考依据。

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