The high-cycle fatigue of mistuned blade disks caused by vibration locali-ation has adverse effects on safety of the blades.A real blisk structure contains many details
so if FEM is used
the number of nodes in the mesh is so large that the modal computation efficiency is low.In order to solve this problem
a perturbed order-reduction method is proposed in this paper.Firstly
the blade disk's stiffness and mass matrixes are divided into two components: the tuned component and the mistuned component.Then
the mistuned component of the original structure is transformed into the corresponding change in the order-reduced structure by using coordinate order-reduction transformation relationship in the fixed interface modal synthesis method.The coordinated modal information is repeatedly used by the perturbation method.The solution of mistuned blade disk modal is transformed into the product of tuning matrix and mistuning matrix
and the natural frequencies and modals of blade disk under mi
关键词
Keywords
references
CAPIEZ-LERNOUT E, SOIZE C, MBAYE M.Mistuning analysis and uncertainty quantification of an industrial bladed disk with geometrical nonlinearity [J].Journal of Sound and Vibration, 2015, 356: 124-143.
ANDRIANOV I V, DANISHEVS'KYY V V, KALAMKAROV A L.Vibration localization in one-dimensional linear and nonlinear lattices: discrete and continuum models [J].Nonlinear Dynamics, 2013, 72(1/2): 37-48.
YU C B, WANG J J, LI Q H.Investigation of the combined effects of intentional mistuning, damping and coupling on the forced response of bladed disks [J].Journal of Vibration and Control, 2011, 17(8): 1149-1157.
LIM H S, CHUNG J, YOO H H.Modal analysis of a rotating multi-packet blade system [J].Journal of Sound and Vibration, 2009, 325(3): 513-531.
BESEM F M, KIELB R E, KEY N L.Forced response sensitivity of a mistuned rotor from an embedded compressor stage [J].ASME Journal of Turbomachinery, 2016, 138(3): 031002.
KAN X, XU Z L, ZHAO B, et al.Effect of Coriolis force on forced response magnification of intentionally mistuned bladed disk [J].Journal of Sound and Vibration, 2017, 399: 124-136.
TAN Y Q, ZANG C P, ZHOU B, et al.Sensitivity analysis of high-frequency forced response for mistuned bladed discs based on high-fidelity models [C]∥ASME Turbo Expo 2016: Turbomachinery Technical Conference and Exposition.New York, USA: ASME, 2016: V07AT32A025.
GUTIERREZ M, PETRIE-REPAR P, KIELB R E, et al.A mistuned forced response analysis of an embedded compressor blisk using a reduced order model [C]∥ASME Turbo Expo 2018: Turbomachinery Technical Conference and Exposition.New York, USA: ASME, 2018: V07CT35A026.
SALAS M G, BLADH R, MÅRTENSSON H, et al.Forced response analysis of a mistuned, compressor blisk comparing three different reduced order model approaches [J].Journal of Engineering for Gas Turbines and Power, 2017, 139(6): 062501.
BHARTIYA Y, SINHA A.Reduced order model of a multistage bladed rotor with geometric mistuning via modal analyses of finite element sectors [J].ASME Journal of Turbomachinery, 2012, 134(4): 041001.
MADDEN A C, CASTANIER M P, EPUREANU B I.Reduced-order model construction procedure for robust mistuning identification of blisks [J].AIAA Journal, 2008, 46(11): 2890-2898.
XU Zili, DOU Baitong, FAN Xiaoping, et al.Coupled torsional vibration analysis of shaft-last stage blade system in large turbo-generator units using CMS method with nested substructures [J].Journal of Chinese Society of Power Engineering, 2014, 34(12): 938-944.
SANGER N L.Design of a low aspect ratio transonic compressor stage using CFD techniques [C]∥ASME 1994 International Gas Turbine and Aeroengine Congress and Exposition.New York, USA: ASME, 1994: V001T01A085.
STORER J A.An introduction to data structures and algorithms [M].Boston, MA, USA: Birkhäuser Boston, 2002: 15-19.