石油学报 ›› 2004, Vol. 25 ›› Issue (4): 96-100.DOI: 10.7623/syxb200404022

• 石油工程 • 上一篇    下一篇

牙轮钻头动力学特性仿真研究

祝效华, 刘清友, 童华   

  1. 油气藏地质及开发工程国家重点实验室, 四川, 成都, 610500
  • 收稿日期:2003-06-10 修回日期:2004-02-23 出版日期:2004-07-25 发布日期:2010-05-21
  • 作者简介:祝效华,男,1978年7月生,2002年获西南石油学院机械制造及其自动化专业硕士学位,现为西南石油学院2002级机械设计及理论专业博士生.E-mail:zxhth113@163.com
  • 基金资助:
    国家自然科学基金(No.59804009)和四川省杰出青年基金资助项目.

Emulation research on dynamics of roller cone bit

ZHU Xiao-hua, LIU Qing-you, TONG Hua   

  1. State Key Lab of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum Institute, Chengdu 610500, China
  • Received:2003-06-10 Revised:2004-02-23 Online:2004-07-25 Published:2010-05-21

摘要: 研究了钻井过程中钻柱、钻头、岩石相互作用下的牙轮钻头动力学特性.根据汉弥尔顿原理和有限单元法,建立了全井钻柱纵向、横向扭转耦合振动动力学模型.在大量单元实验的基础上,建立了牙轮钻头与岩石相互作用力学模型.从系统动力学的角度出发,建立了基于钻柱、岩石相互作用下的牙轮钻头动力学模型.研究了牙轮钻头非线性系统模型的数值求解方法,编制了钻头动力学特性仿真分析软件,在不同钻井操作参数、钻具(钻柱、钻头)几何参数、地层性质条件下,对牙轮钻头动力学特性进行了仿真.明确了钻井过程中井下钻柱及钻头的运动规律、动力学特性、失效机理,为科学合理地预测和控制井眼轨迹提供了理论依据和技术手段.

关键词: 牙轮钻头, 动力学特性, 钻柱, 耦合振动, 岩石, 相互作用, 数学模型, 仿真软件

Abstract: The dynamics of roller cone bit under the interaction of drilling string,bit and rock during the drilling process was investigated. According to Hamilton's principle and finite element method,the models for vertical,lateral and torsion coupled vibration of full-hole drilling strings were established.On the basis of many experiments,the mechanics model for the interaction of roller cone bit and rock was established.On the system dynamics,the dynamics model for roller cone bit under the interaction of drilling string and rock was established. The solving method for the nonlinear system dynamics model of roller cone bit was presented.The dynamics emulation software for bit system was finished. Using the emulation software,the emulation tests under different drilling operational parameters,geometric parameters of drilling tool and different rock property were finished.The research work can help reveal the motion rule of drilling string and bit,dynamics characters and failure meachanism.It also offers theoretical reference and technical basis for scientific prediction and control of well trajectory.

Key words: roller bit, dynamics property, drilling string, coupled vibration, rock, interaction, mathematical model, emulation software

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