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2019 | OriginalPaper | Chapter

Nonlinear Dynamics of a Rotary Drill-String Immersed in a 3D Geometry Well

Authors : Q.-T. Tran, K.-L. Nguyen, Lionel Manin, M.-A. Andrianoely, Sebastien Baguet, Stephane Menand, Regis Dufour

Published in: Proceedings of the 10th International Conference on Rotor Dynamics – IFToMM

Publisher: Springer International Publishing

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Abstract

Oil or geothermic rotary drilling is composed with a very slenderness drill-string which is subjected in particular to the tool-bit excitations. Therefore a great number of vibratory phenomena concerned with the axial, lateral and torsional behavior are exhibited: whirling, bit bouncing, stick slip to cite just a few. In order to predict the rotordynamics of such a structure, the model proposed is based on Timoshenko beam elements immersed in a 3D geometry well. A constant rotation speed in imposed at the top of drill-string. A fluid-structure interaction model that takes into account the drilling mud is used. The effect of drilling mud in drill-string vibration is studied by varying the well trajectories.

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Metadata
Title
Nonlinear Dynamics of a Rotary Drill-String Immersed in a 3D Geometry Well
Authors
Q.-T. Tran
K.-L. Nguyen
Lionel Manin
M.-A. Andrianoely
Sebastien Baguet
Stephane Menand
Regis Dufour
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-319-99272-3_19

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