LABORATORY DEMONSTRATION OF SUB-SYNCHRONOUS ROTOR VIBRATION INDUCED BY FLUID FRICTION.

J. A. Hart, R. D. Brown

Research output: Contribution to journalArticle

Abstract

A simple laboratory apparatus with which subsynchronous vibration of a rotating shaft can be demonstrated, is described. This apparatus serves to illustrate both forward and backward precession induced by directing high velocity fluid, tangentially onto the rotor surface in an annular gap.

Original languageEnglish
Pages (from-to)1-8
Number of pages8
JournalInternational Journal of Mechanical Engineering Education
Volume15
Issue number1
Publication statusPublished - Jan 1987

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rotors
friction
rotating shafts
vibration
fluids
precession

Cite this

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title = "LABORATORY DEMONSTRATION OF SUB-SYNCHRONOUS ROTOR VIBRATION INDUCED BY FLUID FRICTION.",
abstract = "A simple laboratory apparatus with which subsynchronous vibration of a rotating shaft can be demonstrated, is described. This apparatus serves to illustrate both forward and backward precession induced by directing high velocity fluid, tangentially onto the rotor surface in an annular gap.",
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year = "1987",
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pages = "1--8",
journal = "International Journal of Mechanical Engineering Education",
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LABORATORY DEMONSTRATION OF SUB-SYNCHRONOUS ROTOR VIBRATION INDUCED BY FLUID FRICTION. / Hart, J. A.; Brown, R. D.

In: International Journal of Mechanical Engineering Education, Vol. 15, No. 1, 01.1987, p. 1-8.

Research output: Contribution to journalArticle

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AU - Brown, R. D.

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N2 - A simple laboratory apparatus with which subsynchronous vibration of a rotating shaft can be demonstrated, is described. This apparatus serves to illustrate both forward and backward precession induced by directing high velocity fluid, tangentially onto the rotor surface in an annular gap.

AB - A simple laboratory apparatus with which subsynchronous vibration of a rotating shaft can be demonstrated, is described. This apparatus serves to illustrate both forward and backward precession induced by directing high velocity fluid, tangentially onto the rotor surface in an annular gap.

M3 - Article

VL - 15

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EP - 8

JO - International Journal of Mechanical Engineering Education

JF - International Journal of Mechanical Engineering Education

SN - 0306-4190

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