Dynamics of a cracked rotor system with oil-film force in parameter space

An organization structure of global oscillation with respect to a cracked rotor system with oil-film force is investigated in this paper. We profit from GPU cluster parallel computing to present a number of high-quality phase diagrams, and exhibit global dynamic characteristics of the system. An int...

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Veröffentlicht in:Nonlinear dynamics 2017-06, Vol.88 (4), p.2347-2357
Hauptverfasser: Rao, Xiao-Bo, Chu, Yan-Dong, Chang, Ying-Xiang, Zhang, Jian-Gang, Tian, Ya-Ping
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container_end_page 2357
container_issue 4
container_start_page 2347
container_title Nonlinear dynamics
container_volume 88
creator Rao, Xiao-Bo
Chu, Yan-Dong
Chang, Ying-Xiang
Zhang, Jian-Gang
Tian, Ya-Ping
description An organization structure of global oscillation with respect to a cracked rotor system with oil-film force is investigated in this paper. We profit from GPU cluster parallel computing to present a number of high-quality phase diagrams, and exhibit global dynamic characteristics of the system. An interesting scenario, “eye” of chaos, is discovered in this cracked rotor system, emerging as the accumulation limit of forward and reverse period-doubling bifurcation cascades. In this system, it is a common phenomenon that the vibration response of the rotor presents three typical characteristics in parameter space with the rotation speed increasing. Moreover, these phase diagrams assist us to identify multi-attractor coexisting that makes the dynamics behavior of this system become more enrich and complex. These results we represent get us better to understand the nonlinear response of the cracked rotor system and are beneficial to control and diagnose the crack.
doi_str_mv 10.1007/s11071-017-3381-9
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subjects Automotive Engineering
Bifurcations
Cascades
Classical Mechanics
Control
Dynamic characteristics
Dynamical Systems
Engineering
Mechanical Engineering
Military helicopters
Nonlinear response
Original Paper
Parameters
Phase diagrams
Vibration
title Dynamics of a cracked rotor system with oil-film force in parameter space
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