This work presents a numerical investigation of the undesired lateral vibrations (whirling) occurring in drill-strings, which is one of the main sources of losses in drilling applications. The numerical studies are conducted using a nonsmooth lumped parameter model, which has been calibrated based on a realistic experimental drilling rig. The numerical investigations are focused on identifying different types of whirling responses, including periodic and chaotic behavior, which have been previously observed experimentally. As a result, the parameter space is divided into different regions showing dynamically relevant responses of the model, with special interest on the influence of the mass and angular velocity of the drill-string system. In particular, the study reveals the coexistence of various types of whirling motion for a given set of parameters and their sensitivity to initial conditions. The obtained theoretical predictions confirm previous experimental studies carried out by the authors, which provides a solid basis for a better understanding of whirling phenomena in drill-string applications.
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November 2017
Research-Article
Numerical Study of Forward and Backward Whirling of Drill-String
Marcin Kapitaniak,
Marcin Kapitaniak
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: marcin.kapitaniak@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: marcin.kapitaniak@abdn.ac.uk
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Vahid Vaziri,
Vahid Vaziri
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: vahid.vaziri@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: vahid.vaziri@abdn.ac.uk
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Joseph Páez Chávez,
Joseph Páez Chávez
Center for Applied Dynamical Systems and
Computational Methods (CADSCOM),
Faculty of Natural Sciences and Mathematics,
Escuela Superior Politécnica del Litoral,
P.O. Box 09-01-5863,
Guayaquil EC0901, Ecuador;
Center for Dynamics,
Department of Mathematics,
TU Dresden,
Dresden D-01062, Germany
e-mail: jpaez@espol.edu.ec
Computational Methods (CADSCOM),
Faculty of Natural Sciences and Mathematics,
Escuela Superior Politécnica del Litoral,
P.O. Box 09-01-5863,
Guayaquil EC0901, Ecuador;
Center for Dynamics,
Department of Mathematics,
TU Dresden,
Dresden D-01062, Germany
e-mail: jpaez@espol.edu.ec
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Marian Wiercigroch
Marian Wiercigroch
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: m.wiercigroch@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: m.wiercigroch@abdn.ac.uk
Search for other works by this author on:
Marcin Kapitaniak
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: marcin.kapitaniak@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: marcin.kapitaniak@abdn.ac.uk
Vahid Vaziri
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: vahid.vaziri@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: vahid.vaziri@abdn.ac.uk
Joseph Páez Chávez
Center for Applied Dynamical Systems and
Computational Methods (CADSCOM),
Faculty of Natural Sciences and Mathematics,
Escuela Superior Politécnica del Litoral,
P.O. Box 09-01-5863,
Guayaquil EC0901, Ecuador;
Center for Dynamics,
Department of Mathematics,
TU Dresden,
Dresden D-01062, Germany
e-mail: jpaez@espol.edu.ec
Computational Methods (CADSCOM),
Faculty of Natural Sciences and Mathematics,
Escuela Superior Politécnica del Litoral,
P.O. Box 09-01-5863,
Guayaquil EC0901, Ecuador;
Center for Dynamics,
Department of Mathematics,
TU Dresden,
Dresden D-01062, Germany
e-mail: jpaez@espol.edu.ec
Marian Wiercigroch
Centre for Applied Dynamics Research,
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: m.wiercigroch@abdn.ac.uk
School of Engineering,
University of Aberdeen,
Aberdeen AB24 3UE, UK
e-mail: m.wiercigroch@abdn.ac.uk
1Corresponding author.
Contributed by the Design Engineering Division of ASME for publication in the JOURNAL OF COMPUTATIONAL AND NONLINEAR DYNAMICS. Manuscript received November 23, 2016; final manuscript received July 10, 2017; published online September 7, 2017. Assoc. Editor: Stefano Lenci.
J. Comput. Nonlinear Dynam. Nov 2017, 12(6): 061009 (7 pages)
Published Online: September 7, 2017
Article history
Received:
November 23, 2016
Revised:
July 10, 2017
Citation
Kapitaniak, M., Vaziri, V., Páez Chávez, J., and Wiercigroch, M. (September 7, 2017). "Numerical Study of Forward and Backward Whirling of Drill-String." ASME. J. Comput. Nonlinear Dynam. November 2017; 12(6): 061009. https://doi.org/10.1115/1.4037318
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