Computational Investigation Of Aeromechanical Hcf Effects In A Compressor Rotor

by Air Force Institute Of Technology (u.s.)

2021-01-10 07:56:41

High-Cycle Fatigue is a major problem facing the gas turbine industry today. It has been investigated by many researchers, using many different methods. Due to its highly complex nature, designers still do not have adequate tools to accurately predic... Read more
High-Cycle Fatigue is a major problem facing the gas turbine industry today. It has been investigated by many researchers, using many different methods. Due to its highly complex nature, designers still do not have adequate tools to accurately predict the onset of high-cycle fatigue. A three-dimensional Navier-Stokes program was used to perform a study of the unsteady aerodynamics on a compressor rotor. The effect of aerodynamic detuning on the forced response of a rotor blade was compared to a baseline tuned rotor case. Detuning consisted of a ten percent decrease in circumferential spacing between alternate pairs of blades. The high-cycle fatigue effects of this detuning were investigated by examining the unsteady forces and moments on the rotor blades and inlet guide vanes. Computations were performed using a three-dimensional NASA research code (ADPAC) on a cluster of five desktop PCs. Computational times were on the order of several days for a grid of approximately 500,000 cells. These computations showed that detuning of the rotor blade could result in a reduction in the forced response of the IGV and rotor blades. This reduction came without much loss in overall performance (less than ten percent) and therefore may be a viable option to reduce high-cycle fatigue. Less

Book Details

File size9.69 X 7.44 X 0.23 in
Print pages110
PublisherBiblioGov
Publication date September 13, 2012
LanguageEnglish
ISBN9781249373780

Compare Prices

Store Availability Book Format Condition Price
Indigo Books & Music In Stock Paperback Paperback Buy CAD 22.99
Indigo Books & MusicIn Stock
Format
Paperback
Condition
Paperback
Buy CAD 22.99
Available Discount
No Discount available

Join us and get access to all
your favourite books

Sign up for free and start exploring thousands of eBooks today.

Sign up for free