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Effect of Axial Vibration on Sliding Frictional Force between Shale and 45 Steel

机译:轴向振动对页岩与45钢之间滑动摩擦力的影响

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Activating drill string vibration is an effective means to mitigate the excessive drag encountered during drilling complex-structure wells. However, the Coulomb model cannot describe the sliding friction behavior between drill string and borehole rock with imposed axial vibrations. To solve this problem, a specially designed experimental setup was utilized to investigate the characteristics of axial vibrating-sliding coupling friction. The results indicate that when vibration velocity is greater than sliding velocity, axial vibration can significantly reduce friction force between contact surfaces. Its friction reduction mechanism embodies not only the changes of instantaneous friction force, but also friction coefficient. Meanwhile, a friction coupling model was established based on the Hertz contact theory and Dahl model. The corresponding computational program was developed in Matlab/Simulink environment. The calculation results are in good agreement with the experimental results, verifying the validity of the present method. Furthermore, to overcome the shortcoming of Dahl model, a dynamic friction coefficient model was proposed to evaluate the friction-reducing effect of axial vibration using dimensional analysis method. The model parameters under different lubrication conditions were retrieved through inverse calculation with experimental data. This method provides a new solution for evaluating the friction-reducing effect of hydraulic oscillator and optimizing its placement.
机译:激活钻柱振动是减轻复杂结构井钻井过程中遇到的过大阻力的有效手段。但是,库仑模型无法描述施加轴向振动的钻柱与井壁之间的滑动摩擦行为。为了解决这个问题,采用了专门设计的实验装置来研究轴向振动-滑动耦合摩擦的特性。结果表明,当振动速度大于滑动速度时,轴向振动可以显着减小接触面之间的摩擦力。其减摩机理不仅体现了瞬时摩擦力的变化,还体现了摩擦系数。同时,基于赫兹接触理论和达尔模型建立了摩擦耦合模型。在Matlab / Simulink环境中开发了相应的计算程序。计算结果与实验结果吻合良好,证明了该方法的有效性。此外,为克服Dahl模型的不足,提出了一种动态摩擦系数模型,利用尺寸分析法评估轴向振动的减摩效果。通过与实验数据的反算,获得了不同润滑条件下的模型参数。该方法为评估液压振荡器的减摩效果并优化其位置提供了新的解决方案。

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