深井钻柱轴扭耦合振动分模态阻尼计算方法

MODAL-SEGMENTED DAMPING CALCULATION METHOD FOR AXIAL-TORSIONAL COUPLED VIBRATIONS OF DEEP-WELL DRILL STRINGS

  • 摘要: 深井钻柱振动是危害钻井安全、制约钻井效率提升的关键因素。理论建模作为研究钻柱振动特性与影响因素的重要手段,其准确性受限于阻尼计算方法的模糊性和参数不确定性。为解决这一问题,该研究系统分析了钻柱振动理论中的阻尼计算方法,建立了考虑钻头-岩石非线性相互作用的多自由度钻柱轴扭耦合振动模型。基于Rayleigh阻尼理论,深入研究了不同阻尼比和固有频率条件下的轴扭耦合振动响应特性。通过Monte-Carlo采样进行的不确定性分析表明:阻尼比与固有频率对Rayleigh阻尼的影响呈现显著非线性特征,这种非线性关系会导致数值模拟结果产生明显偏差。针对阻尼计算中的参数不确定性问题,创新性地提出了分模态阻尼计算方法,该方法通过为各模态独立分配阻尼比并叠加模态阻尼,有效克服了传统Rayleigh阻尼方法中阻尼比取值主观性和固有频率阶数选择不确定性的关键缺陷,显著提升了模型的理论严谨性与预测可靠性。数值模拟与现场实测数据的对比验证显示,所提方法能够准确反映钻柱振动特性,计算结果与实测数据具有良好的一致性。该计算方法还具有良好的扩展性,可适用于不同钻柱结构的振动分析。

     

    Abstract: The drill-string vibration in deep wells is a critical factor that compromises drilling safety and limits efficiency. Theoretical modeling, an essential tool for studying vibration characteristics and drivers, is limited by ambiguities in damping calculations and by uncertainties in parameter selection. Existing damping approaches are systematically analyzed, and a multi-degree-of-freedom axial–torsional coupled model that includes nonlinear bit–rock interaction is established. Based on Rayleigh damping theory, the vibration responses across ranges of damping ratios and of natural frequencies are examined. Monte Carlo–based uncertainty analysis reveals a nonlinear relationship among damping ratios, natural frequencies, and Rayleigh damping coefficients, which can cause deviations in numerical simulations. To mitigate parameter uncertainty, a modal-segmented damping method is proposed. The method assigns a damping ratio to each mode and superposes modal contributions, addressing the subjectivity in damping-ratio selection and the ambiguity in modal-order selection inherent in Rayleigh damping. This enhances the model’s rigor and predictive reliability. The comparison of simulations with field measurements shows that the method captures drill-string vibration characteristics, with close agreement between calculated and measured data. The method also scales to the vibration analyses of various drill-string configurations.

     

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