首页|考虑连续特性的水平井钻柱轴向振动分析

考虑连续特性的水平井钻柱轴向振动分析

扫码查看
为精确描述水平井钻柱轴向受迫振动规律,以连续性波动理论为基础,考虑了钻柱连续特性、库伦阻尼及钻井液黏性阻尼作用和轴向振动工具对钻柱的位移激励,并采用等效黏性阻尼法对库仑阻尼进行线性化处理,建立了轴向振动工具作用下的水平井钻柱运动的动态解析模型;通过轴向振动工具测试实验验证了本文所建模型,并利用数值模拟分析了轴向振动工具的频率及钻柱与井壁间摩擦系数对水平井钻柱轴向受迫振动的影响.结果表明:在一定范围内增加轴向振动工具的振荡频率可提高水平井钻柱的轴向受迫振动响应;钻柱与井壁间摩擦系数对水平井钻柱轴向受迫振动的影响随着钻柱长度的增加而降低.本文的研究方法和模型可为改善轴向振动工具在水平井作业中的应用提供理论指导.
Axial Vibration Analysis of Horizontal Well Drill String Considering Continuous Characteristics
In order to accurately describe the axial forced vibration law of horizontal well drill string,the equivalent viscous damping method was used to linearize the Coulomb damping and the dynamic analytical model of horizontal well drill string motion was established under the action of axial vibration tool after considering the continuous characteristics of drill string,Coulomb damping,viscous damping of drilling fluid and the displacement excitation of drill string by axial vibration tool,based on the continuous wave theory.The model was verified by the axial vibration tool test experiment.The influence of the frequency of the axial vibration tool and the friction coefficient between the drill string and the wellbore on the axial forced vibration of the horizontal well drill string was analyzed by numerical simulation.The results show that the axial forced vibration response of the drilling string in horizontal wells can be improved by increasing the oscillation frequency of the axial vibration tool in a certain range,and that the effect of friction coefficient between drill string and borehole wall on the axial forced vibration of horizontal well drill string decreases with the increase of drill string length.The research method and models described in this paper can be expected to provide theoretical guidance for improving the use of axial vibration tools in horizontal well operation.

horizontal welldrill stringwave theorycontinuous characteristicsdampingaxial forced vibration

高成、梅熠轩、刘旭辉、孙巧雷、施雷、冯定

展开 >

长江大学机械工程学院,荆州 434023

湖北省油气钻完井工具工程中心,荆州 434023

水平井 钻柱 波动理论 连续特性 阻尼 轴向受迫振动

国家自然科学基金湖北省自然科学基金国家采油装备工程技术研究中心项目

522040022021CFB180ZBKJ2021-A-03

2024

科学技术与工程
中国技术经济学会

科学技术与工程

CSTPCD北大核心
影响因子:0.338
ISSN:1671-1815
年,卷(期):2024.24(3)
  • 31