Forced axial and torsional vibrations of a shaft line using the transfer matrix method related to solution coefficients

Author:

Chahr-Eddine Kandouci,Yassine Adjal

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Ocean Engineering

Reference10 articles.

1. Bureau Veritas (2011). BV rules for the classification of steel ships, part C: machinery, electricity, automation and fire protection. Bureau Veritas, Neuilly-sur-Seine, France, 154–158.

2. CTO (1983). Hydrodynamic forces caused by the stream after the hull. Ship Design and Research Centre, Gdańsk, Poland. (in Polish)

3. Davor S (1997). Torsional-axial coupling in the line shafting vibrations in merchant ocean going ships. Master’s thesis, Concordia University, Montreal, 10–17.

4. JIA XJ (2008). Analysis of the flexural vibration of ship’s tail by transfer matrix method. Journal of Marine Science and Application, 7(3), 179–183.

5. Kandouci CE (1992). Strength Analysis of shaft line in a complex state of stress. Ph. D. thesis, Faculty of Shipbuilding, Technical University of Gdańsk, Gdańsk, Poland. (in Polish)

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