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Optimal Vibration Reduction of Flexible Rotor Systems By the Virtual Bearing Method

由虚拟适用方法的灵活转子系统的最佳的颤动减小

作     者:Liu, Shibing Yang, Bingen 

作者机构:Hyperloop One 2159 Bay St Los Angeles CA 90021 USA Univ Southern Calif Dept Aerosp & Mech Engn Los Angeles CA 90089 USA 

出 版 物:《JOURNAL OF VIBRATION AND ACOUSTICS-TRANSACTIONS OF THE ASME》 (振动与声学杂志;美国机械工程师学会汇刊)

年 卷 期:2018年第140卷第2期

页      面:021008-021008页

核心收录:

学科分类:08[工学] 0802[工学-机械工程] 0801[工学-力学(可授工学、理学学位)] 0702[理学-物理学] 

主  题:flexible rotor systems rotor-bearing systems bearings vibration reduction optimization optimal design optimal bearing placement distributed transfer function method analytical solutions 

摘      要:This paper presents a new approach to optimal bearing placement that minimizes the vibration amplitude of a flexible rotor system with a minimum number of bearings. The thrust of the effort is the introduction of a virtual bearing method (VBM), by which a minimum number of bearings can be automatically determined in a rotor design without trial and error. This unique method is useful in dealing with the issue of undetermined number of bearings. In the development, the VBM and a distributed transfer function method (DTFM) for closed-form analytical solutions are integrated to formulate an optimization problem of mixed continuous-and-integer type, in which bearing locations and bearing index numbers (BINs) (specially defined integer variables representing the sizes and properties of all available bearings) are selected as design variables. Solution of the optimization problem by a real-coded genetic algorithm yields an optimal design that satisfies all the rotor design requirements with a minimum number of bearings. Filling a technical gap in the literature, the proposed optimal bearing placement approach is applicable to either redesign of an existing rotor system for improvement of system performance or preliminary design of a new rotor system with the number of bearings to be installed being unforeknown.

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