Title of article
Nonlinear Model and Qualitative Analysis for Coupled Axial/Torsional Vibrations of Drill String
Author/Authors
Ren, Fushen Department of Mechanical Science and Engineering - Northeast Petroleum University,China , Wang, Baojin Department of Mechanical Science and Engineering - Northeast Petroleum University, China , Chen, Suli Department of Mechanical Science and Engineering - Northeast Petroleum University, China , Yao, Zhigang Department of Mechanical Science and Engineering - Northeast Petroleum University, China , Bai, Baojun Department of Petroleum Engineering - Missouri University of Science and Technology, USA
Pages
18
From page
1
To page
18
Abstract
A nonlinear dynamics model and qualitative analysis are presented to study the key effective factors for coupled axial/torsional vibrations of a drill string, which is described as a simplified, equivalent, flexible shell under axial rotation. Here, after dimensionless processing, the mathematical models are obtained accounting for the coupling of axial and torsional vibrations using the nonlinear dynamics qualitative method, in which excitation loads and boundary conditions of the drill string are simplified to a rotating, flexible shell. The analysis of dynamics responses is performed by means of the Runge-Kutta-Fehlberg method, in which the rules that govern the changing of the torsional and axial excitation are revealed, and suggestions for engineering applications are also given. The simulation analysis shows that when the drill string is in a lower-speed rotation zone, the torsional excitation is the key factor in the coupling vibration, and increasing the torsional stress of the drill string more easily leads to the coupling vibration; however, when the drill string is in a higher-speed rotating zone, the axial excitation is a key factor in the coupling vibration, and the axial stress in a particular interval more easily leads to the coupling vibration of the drill string.
Keywords
Drill String , Nonlinear Model , Coupled Axial/Torsional Vibrations , Qualitative Analysis
Journal title
Shock and Vibration
Serial Year
2016
Full Text URL
Record number
2616905
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