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CFD Numerical Simulation for Downhole Thruster Performance Evaluation

机译:井下推进器性能评估的CFD数值模拟

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This study focuses on numerical simulation and evaluation of a hydraulically powered downhole Thruster. This device is numerically simulated and evaluated using ANSYS Fluent 17.2 to show its generation of pressure pulses that can induce downhole forces that magnify the downhole dynamic weight on bit (DWOB) using drilling mud. Such magnification of the DWOB can produce axial motion of the Thruster. Such axial motions, as proved by many publications can improve the drilling rate of penetration (ROP), release stuck pipes, and reduce frictions in non-vertical wells. The special inner design of the Thruster creates pressure pulses that can provide load impact on the drill bit leading to the increase of WOB that can enhance the drilling performance. The current stage of the study of the Thruster involves a mechanical design of the Thruster by the SolidWorks and an evaluation of the tool function and performance through pressure effect simulation by ANSYS Fluent 17.2. Initially, water is used as the fluid and the main parameters involved in the analysis are pressure and velocity. However, power-law as a non-Newtonian fluid is also used for comparison study in the section of pressure drop analysis. The results are analyzed based on velocity pressure profiles, pressure drops, pressure effects with applications of various back pressures at several planes using water and power-law fluids.
机译:这项研究集中于液压动力井下推进器的数值模拟和评估。使用ANSYS Fluent 17.2对该设备进行了数值模拟和评估,以显示其压力脉冲的产生,该压力脉冲会引起井下作用力,从而扩大使用钻井泥浆的井下动压(DWOB)。 DWOB的这种放大可以产生推力器的轴向运动。许多出版物证明,这种轴向运动可以提高钻速(ROP),释放卡住的管道,并减少非垂直井中的摩擦。推力器的特殊内部设计可产生压力脉冲,从而可对钻头施加负载影响,从而导致WOB的增加,从而可提高钻井性能。推进器研究的当前阶段包括SolidWorks进行的推进器的机械设计,以及ANSYS Fluent 17.2通过压力效果模拟对工具功能和性能的评估。最初,将水用作流体,分析涉及的主要参数是压力和速度。但是,在压降分析部分中,作为非牛顿流体的幂律也用于比较研究。根据速度压力曲线,压降,压力影响以及使用水和幂律流体在多个平面上施加各种背压来分析结果。

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