Forced Response Analysis of Pipes Conveying Fluid by Nonlinear Normal Modes Method and Iterative Approach

Author:

Liang Feng12,Yang Xiao-Dong2,Qian Ying-Jing2,Zhang Wei2

Affiliation:

1. School of Energy and Power Engineering, Shenyang University of Chemical Technology, Shenyang 110142, China;

2. College of Mechanical Engineering and Applied Electronics, Beijing University of Technology, Beijing 100124, China e-mail:

Abstract

The forced vibration of gyroscopic continua is investigated by taking the pipes conveying fluid as an example. The nonlinear normal modes and a numerical iterative approach are used to perform numerical response analysis. The nonlinear nonautonomous governing equations are transformed into a set of pseudo-autonomous ones by using the harmonic balance method. Based on the pseudo-autonomous system, the nonlinear normal modes are constructed by the invariant manifold method on the state space and substituted back into the original discrete equations. By repeating the above mentioned steps, the dynamic responses can be numerically obtained asymptotically using such iterative approach. Quadrature phase difference between the general coordinates is verified for the gyroscopic system and traveling waves instead of standing waves are found in the time-domain complex modal analysis.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Applied Mathematics,Mechanical Engineering,Control and Systems Engineering,Applied Mathematics,Mechanical Engineering,Control and Systems Engineering

Reference20 articles.

1. Vibrations and Stability of an Axially Moving Rectangular Composite Plate;ASME J. Appl. Mech.,2011

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3. Matrix Madness and Complex Confusion… A Review of Complex Modes From Multiple Viewpoints;Sound Vib.,2012

4. Modal Analysis of the Gyroscopic Continua: Comparison of Continuous and Discretized Models;ASME J. Appl. Mech.,2016

5. Complex Modal Analysis of Rods With Viscous Damping Devices;J. Sound Vib.,2014

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