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Kinetic characteristics analysis of a new torsional oscillator based on impulse response

机译:基于脉冲响应的新型扭转振荡器的动力学特性分析

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For reducing the sticking or stick-slip phenomenon, this paper proposed a new torsional oscillator which could produce a circumferential torque vibration in the drilling process. Based on the working principle and fundamental structure, the generation mechanism of torsional vibration and the relationships of the mechanical parts are derived. Then, the dynamic model is established according to the drilling operation condition. With this, the further analysis of changing relationship between the inlet flow and torque is studied. The angular displacement and velocity of the valve body are analyzed according to the dynamics theory models. With the combination of the theoretical analysis model, the parameter studies are carried out by numerical example calculation. Finally, experiment test is conducted to identify the accuracy and reliability of the calculation method under the corresponding working conditions. The results show that with the constant pressure the average torque is proportional to the inlet flow. However, while the inlet pressure is invariable, the collision period is inversely proportional to the inlet flow, and the angular displacement and velocity are proportional to the inlet flow. The research results can provide references for the design and application of the torsional vibration tools, which is potential and significant in drilling engineering.
机译:为了减少粘滞或粘滑现象,本文提出了一种新型的扭振器,该扭振器在钻孔过程中会产生圆周转矩振动。根据工作原理和基本结构,推导了扭转振动的产生机理以及各机械零件之间的关系。然后,根据钻井作业条件建立动力学模型。据此,进一步研究了入口流量和转矩之间变化关系的分析。根据动力学理论模型分析了阀体的角位移和速度。结合理论分析模型,通过数值算例计算进行参数研究。最后,通过实验测试确定了该计算方法在相应工作条件下的准确性和可靠性。结果表明,在恒定压力下,平均扭矩与进气流量成正比。但是,虽然入口压力是不变的,但碰撞时间与入口流量成反比,而角位移和速度与入口流量成正比。研究结果可为扭转振动工具的设计和应用提供参考,在钻探工程中具有潜在的意义。

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