Direct and Indirect Noise Generated by Entropic and Compositional Inhomogeneities
Author(s) -
Erwan O. Rolland,
Francesca De Domenico,
Simone Hochgreb
Publication year - 2018
Publication title -
journal of engineering for gas turbines and power
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.567
H-Index - 84
eISSN - 1528-8919
pISSN - 0742-4795
DOI - 10.1115/1.4039050
Subject(s) - nozzle , noise (video) , acoustics , jet noise , aeroacoustics , isentropic process , physics , mechanics , sound pressure , materials science , thermodynamics , computer science , artificial intelligence , image (mathematics)
Flow disturbances are generated inside a duct via pulsed injection of helium into a flow of air. This leads to the generation of an acoustic pulse (direct noise), as well as the production of entropic and compositional inhomogeneities which are convected with the mean flow. As these inhomogeneities are convected through a choked nozzle, they generate indirect noise. The resulting acoustic pressure fluctuations are measured experimentally using pressure transducers upstream of the nozzle. Insight obtained from theoretical models and a time-delay analysis can be used to isolate and extract the contributions of direct and indirect noise in the experimental signal. These results are directly compared to existing one-dimensional direct and indirect noise models. The experimental measurement of indirect noise is found to be in good agreement with the theoretical models for entropy noise and compositional noise for a compact onedimensional isentropic nozzle.
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