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Experimental investigation of the acoustic reflection coefficient of a modeled gas turbine impingement cooling section

  • Technische Universität München

Publikation: Beitrag in Buch/Bericht/KonferenzbandKonferenzbeitragBegutachtung

3 Zitate (Scopus)

Abstract

The thermoacoustic stability of gas turbines depends on a balance of acoustic energy inside the engine. While the flames produce acoustic energy, other areas like the impingement cooling system contribute to damping. In this paper, we investigate the damping potential of an annular impingement sleeve geometry embedded into a realistic environment. A cold flow test rig was designed to represent real engine conditions in terms of geometry, and flow situation. High quality data was delivered by six piezoelectric dynamic pressure sensors. Experiments were carried out for different mean flow velocities through the cooling holes. The acoustic reflection coefficient of the impingement sleeve was evaluated at a downstream reference location. Further parameters investigated were the number of cooling holes, and the geometry of the chamber surrounding the impingement sleeve. Experimental results show that the determining parameter for the reflection coefficient is the mean flow velocity through the impingement holes. An increase of the mean flow velocity leads to significantly increased damping, and to low values of the reflection coefficient.

OriginalspracheEnglisch
TitelASME Turbo Expo 2012
UntertitelTurbine Technical Conference and Exposition, GT 2012
Seiten195-203
Seitenumfang9
DOIs
PublikationsstatusVeröffentlicht - 2012
VeranstaltungASME Turbo Expo 2012: Turbine Technical Conference and Exposition, GT 2012 - Copenhagen, Dänemark
Dauer: 11 Juni 201215 Juni 2012

Publikationsreihe

NameProceedings of the ASME Turbo Expo
Band1

Konferenz

KonferenzASME Turbo Expo 2012: Turbine Technical Conference and Exposition, GT 2012
Land/GebietDänemark
OrtCopenhagen
Zeitraum11/06/1215/06/12

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