Publication:
Effect of Coupled Torsional and Transverse Vibrations of the Marine Propulsion Shaft System

Loading...
Thumbnail Image

Institution Authors

Item type:Person,
Özsoysal, Osman Azmi
Profesor

Advisor

Department

Journal Title

Journal ISSN

Volume Title

Publisher

Springer Science and Business Media LLC
View PlumX Details

Research Projects

Organizational Units

Journal Issue

Abstract

AbstractIn this study, the coupled torsional–transverse vibration of a propeller shaft system owing to the misalignment caused by the shaft rotation was investigated. The proposed numerical model is based on the modified version of the Jeffcott rotor model. The equation of motion describing the harmonic vibrations of the system was obtained using the Euler–Lagrange equations for the associated energy functional. Experiments considering different rotation speeds and axial loads acting on the propulsion shaft system were performed to verify the numerical model. The effects of system parameters such as shaft length and diameter, stiffness and damping coefficients, and cross-section eccentricity were also studied. The cross-section eccentricity increased the displacement response, yet coupled vibrations were not initially observed. With the increase in the eccentricity, the interaction between two vibration modes became apparent, and the agreement between numerical predictions and experimental measurements improved. Given the results, the modified version of the Jeffcott rotor model can represent the coupled torsional–transverse vibration of propulsion shaft systems.

Description

Journal or Series

Journal of Marine Science and Application

ISSN

1671-9433

ISBN

Rights

OPEN

Keywords

FOS: Political science, Marine engineering, FOS: Mechanical engineering, Structural engineering, Geometry, FOS: Law, Hydraulic Systems Control and Optimization, Propulsion, Mechanics, Vibration, Stiffness, Engineering, Displacement (psychology), Equations of motion, Propeller, FOS: Mathematics, Psychology, Eccentricity (behavior), Rotor (electric), Classical mechanics, Political science, Torsional vibration, Mechanical Engineering, Physics, Dynamics and Control of Magnetic Levitation Systems, Drive shaft, Harmonic, Acoustics, Mechanical engineering, Transverse plane, Cavitation Prediction, FOS: Psychology, Cavitation in Hydropower Systems and Turbines, Aerospace engineering, Control and Systems Engineering, Mechanics of Materials, Helicopter rotor, Physical Sciences, Psychotherapist, Vibration Analysis, Rotor Dynamics, Rotation (mathematics), Law, Mathematics

Citation

Collections

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

4

Views

0

Downloads