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contributor authorS. T. Myrick
contributor authorH. G. Rylander
date accessioned2017-05-08T23:01:11Z
date available2017-05-08T23:01:11Z
date copyrightNovember, 1976
date issued1976
identifier issn1087-1357
identifier otherJMSEFK-27650#1135_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/88921
description abstractAn analytical method has been developed for the simulation of the transient and steady-state response of flexible rotors supported by realistic incompressible-film hydrodynamic journal bearings. The coupled nonlinear differential equations of rotor motion, formulated as an initial-value problem, are solved in conjunction with a “realistic” Reynolds equation solution which includes finite bearing length, wedge and squeeze films, fluid film cavitation, oil inlet geometry, and eccentricity and tilt (gyroscopics) of the journal. Presented in this paper are some of the results of a numerical and experimental study of rotor whirl using that analytical model. The response of a flexible rotor, for speeds up to the threshold of instability, is demonstrated as a function of disk unbalance and viscous damping. The validity of the analytical model is confirmed by comparison of experimental whirl data with numerical simulations of the response of the test rotor through the critical speed region to the onset of oil whip.
publisherThe American Society of Mechanical Engineers (ASME)
titleAnalysis of Flexible Rotor Whirl and Whip Using a Realistic Hydrodynamic Journal Bearing Model
typeJournal Paper
journal volume98
journal issue4
journal titleJournal of Manufacturing Science and Engineering
identifier doi10.1115/1.3439066
journal fristpage1135
journal lastpage1143
identifier eissn1528-8935
keywordsRotors
keywordsWhirls
keywordsJournal bearings
keywordsMotion
keywordsComputer simulation
keywordsSimulation
keywordsCavitation
keywordsBearings
keywordsDamping
keywordsDisks
keywordsEquations
keywordsFluid films
keywordsGeometry
keywordsNonlinear differential equations
keywordsSteady state AND Wedges
treeJournal of Manufacturing Science and Engineering:;1976:;volume( 098 ):;issue: 004
contenttypeFulltext


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