Title | Numerical aerodynamic damping evaluation of high-pressure steam turbine blades for aeromechanical characterization |
Publication Type | Conference Paper |
Year of Publication | 2016 |
Authors | Peruzzi L, Bellucci J, Pinelli L, Arnone A, Arcangeli L, Cosi L, Mazzucco M |
Conference Name | ASME Turbo Expo 2016: Turbomachinery Technical Conference and Exposition |
Volume | 8: Microturbines, Turbochargers and Small Turbomachines; Steam Turbines |
Pagination | V008T26A012; 10 pages |
Conference Location | Seoul, South Korea, June 13–17, 2016 |
ISBN Number | 978-0-7918-4986-6 |
Accession Number | WOS:000385467300049 |
Other Numbers | Scopus 2-s2.0-84991372848 |
Keywords | Blades, Damping, High pressure (Physics), Steam turbines |
Abstract | A validated non-linear uncoupled method for flutter stability analysis was employed to estimate the aerodynamic damping of an HP (High Pressure) steam turbine blade row. Usually such blade rows are not affected to flutter instability problems, yet an estimation of the aerodynamic damping can be useful for an accurate aeromechanical characterization of these kind of blade rows. The geometry under investigation is a typical steam turbine blade row at design point. Computational aeroelastic analyses are performed on the more relevant modeshapes, sampling the nodal diameters, in order to well describe the typical aeroelastic stability curve. The presence of the tip shroud implies a strong mechanical coupling between adjacent blades resulting in complex modeshapes with high frequency, significantly different from those usually analyzed in the flutter analysis. The results in term of aerodynamic damping curves are rather different from the usually sinusoidal shape. This is due to the large variation of the frequency over the analyzed nodal diameters, especially at low nodal diameters range. This results are useful to give a better insight in the aeroelastic response of this type of blades.
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Notes | GT2016-56378 |
URL | http://proceedings.asmedigitalcollection.asme.org/proceeding.aspx?articleid=2555576&resultClick=3 |
DOI | 10.1115/GT2016-56378 |
Refereed Designation | Refereed |