A NUMERICAL STUDY ON THE EFFECT OF UNBALANCE AND MISALIGNMENT FAULT PARAMETERS IN A RIGID ROTOR LEVITATED BY ACTIVE MAGNETIC BEARINGS

被引:0
作者
Kumar, Prabhat [1 ]
Tiwari, Rajiv [1 ]
机构
[1] Indian Inst Technol Guwahati, Dept Mech Engn, Gauhati, Assam, India
来源
PROCEEDINGS OF THE ASME GAS TURBINE INDIA CONFERENCE, 2019, VOL 1 | 2020年
关键词
Rotor; Active magnetic bearing; Misalignment; Unbalance; Non-dimensional Response; DYNAMIC PARAMETERS; IDENTIFICATION; SYSTEM;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This paper focusses on analysing the vibration behaviour of a rigid rotor levitated by active magnetic bearings (AMB) under the influence of unbalance and misalignment parameters. Unbalance in rotor and misalignment between rotor and both supported AMBs are key fault parameters in the rotor system. To demonstrate this dynamic analysis, an unbalanced rigid rotor with a disc at the middle levitated by two misaligned active magnetic bearings has been mathematically modelled. One of the novel concepts is also described as how the force due to active magnetic bearings on the rigid rotor is modified when the rotor is parallel misaligned with AMBs. With inclusion of inertia force, unbalance force and force due to misaligned AMBs, the equations of motion of the rigid rotor system are derived and converted into dimensionless form in terms of various non dimensional system and fault parameters. Numerical simulations have been performed to yield the dimensionless rotor displacement and controlling current responses at AMBs. The prime intention of the present paper is to study the effect on the displacement response of the rigid rotor system and the current consumption of AMBs for different ranges of disc eccentricities and rotor-AMB misalignments.
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页数:7
相关论文
共 17 条
[1]   Active magnetic bearings for the identification and fault diagnosis in turbomachinery [J].
Aenis, M ;
Knopf, E ;
Nordmann, R .
MECHATRONICS, 2002, 12 (08) :1011-1021
[2]  
[Anonymous], 2004, Int. J. Rotating Mach
[3]  
Clark D.J., 2004, NASATM2004213177
[4]   Vibration signatures of a rotor-coupling-bearing system under angular misalignment [J].
da Silva Tuckmantel, Felipe Wenzel ;
Cavalca, Katia Lucchesi .
MECHANISM AND MACHINE THEORY, 2019, 133 :559-583
[5]   An Active Identification Method of Rotor Unbalance Parameters [J].
De Queiroz, M. S. .
JOURNAL OF VIBRATION AND CONTROL, 2009, 15 (09) :1365-1374
[6]  
Jalan AK, 2013, ADV VIB ENG, V12, P23
[7]   EXPERIMENTS IN THE CONTROL OF UNBALANCE RESPONSE USING MAGNETIC BEARINGS [J].
KNOSPE, CR ;
HOPE, RW ;
FEDIGAN, SJ ;
WILLIAMS, RD .
MECHATRONICS, 1995, 5 (04) :385-400
[8]   Multi-fault identification in simple rotor-bearing-coupling systems based on forced response measurements [J].
Lal, Mohit ;
Tiwari, Rajiv .
MECHANISM AND MACHINE THEORY, 2012, 51 :87-109
[9]   Estimating rotor unbalance and misalignment from a single run-down [J].
Lees, AW ;
Sinha, JK ;
Friswell, MI .
MODERN PRACTICE IN STRESS AND VIBRATION ANALYSIS, 2003, 440-4 :229-236
[10]   Experimental investigations on vibration response of misaligned rotors [J].
Patel, Tejas H. ;
Darpe, Ashish K. .
MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2009, 23 (07) :2236-2252