Reacting Hydrogen Jet in Crossflow - Flame Dynamics Under Acoustic Forcing

Fuente: arXiv
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Main Authors: Kumar, Ankur, sinha, Anubhav
Format: Preprint
Published: 2024
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_version_ 1866916545127514112
author Kumar, Ankur
sinha, Anubhav
author_facet Kumar, Ankur
sinha, Anubhav
contents This paper presents experimental study of reacting hydrogen jet in crossflow. High speed shadowgraph images are used to capture flame dynamics. Unforced jets with various momentum flux ratios (q) are studied. Proper Orthogonal Decomposition (POD) analysis is used to examine the high-speed instantaneous images and characterize spatio-temporal behavior the reacting jets. Further, jet is acoustically forced with various frequencies and the effect of forcing frequency and momentum flux ratio is studied in detail. Instantaneous images, POD mode shapes and Power Spectral Density (PSD) plots are used to assess the response of jet to forcing function, and the influence of crossflow. It is observed that the jet does not equally respond to all frequencies and the preferred frequency range is identified. It is also observed that higher momentum ratio produces stronger interaction with the crossflow which dampens the effect of forcing.
format Preprint
id arxiv_https___arxiv_org_abs_2412_20217
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Reacting Hydrogen Jet in Crossflow - Flame Dynamics Under Acoustic Forcing
Kumar, Ankur
sinha, Anubhav
Fluid Dynamics
This paper presents experimental study of reacting hydrogen jet in crossflow. High speed shadowgraph images are used to capture flame dynamics. Unforced jets with various momentum flux ratios (q) are studied. Proper Orthogonal Decomposition (POD) analysis is used to examine the high-speed instantaneous images and characterize spatio-temporal behavior the reacting jets. Further, jet is acoustically forced with various frequencies and the effect of forcing frequency and momentum flux ratio is studied in detail. Instantaneous images, POD mode shapes and Power Spectral Density (PSD) plots are used to assess the response of jet to forcing function, and the influence of crossflow. It is observed that the jet does not equally respond to all frequencies and the preferred frequency range is identified. It is also observed that higher momentum ratio produces stronger interaction with the crossflow which dampens the effect of forcing.
title Reacting Hydrogen Jet in Crossflow - Flame Dynamics Under Acoustic Forcing
topic Fluid Dynamics
url https://arxiv.org/abs/2412.20217