On the Use of Helmholtz Resonators for Damping Acoustic Pulsations in Industrial Gas Turbines
2004 ◽
Vol 126
(2)
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pp. 271-275
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In this work, the application of Helmholtz resonators for damping low-frequency pulsations in gas turbine combustion chambers is discussed. We present a nonlinear model for predicting the acoustic response of resonators including the effect of purging air. Atmospheric experiments are used to validate the model, which is employed to design a resonator arrangement for damping low-frequency pulsations in an ALSTOM GT11N2 gas turbine. The predicted damper impedances are used as the boundary condition in the three-dimensional analysis of the combustion chamber. The suggested arrangement leads to a significant extension of the low-pulsation operating regime of the engine.
2021 ◽
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1995 ◽
Vol 117
(2)
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pp. 245-250
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