The addition of hydrogen in ammonia/air mixtures can lead to the onset of intrinsic flame instabilities at conditions of technical relevance. The length and time scales of intrinsic instabilities can be estimated by means of linear stability analysis of planar premixed flames by evaluating the dispersion relation. In this work, we perform such linear stability analysis for hydrogen-enriched ammonia/air flames (50%H2-50%NH3 by volume) using direct numerical simulation with a detailed chemical kinetic mechanism. The impact of pressure and the inclusion of the Soret effect in the governing equations is assessed by comparing the resulting dispersion relation at atmospheric pressure and 10 atm. Our data indicate that both pressure and the Soret effects promote the onset of intrinsic instabilities. Comparisons with available numerical literature data as well as theoretical models are also discussed.

Intrinsic instability of lean hydrogen/ammonia premixed flames: Influence of Soret effect and pressure / D'Alessio, Francesco; Matteucci, C.; Lapenna, P. E.; Creta, F.. - In: FUEL COMMUNICATIONS. - ISSN 2666-0520. - 19:(2024). [10.1016/j.jfueco.2024.100110]

Intrinsic instability of lean hydrogen/ammonia premixed flames: Influence of Soret effect and pressure

Francesco D'Alessio
Primo
;
C. Matteucci
Secondo
;
P. E. Lapenna
Penultimo
;
F. Creta
Ultimo
2024

Abstract

The addition of hydrogen in ammonia/air mixtures can lead to the onset of intrinsic flame instabilities at conditions of technical relevance. The length and time scales of intrinsic instabilities can be estimated by means of linear stability analysis of planar premixed flames by evaluating the dispersion relation. In this work, we perform such linear stability analysis for hydrogen-enriched ammonia/air flames (50%H2-50%NH3 by volume) using direct numerical simulation with a detailed chemical kinetic mechanism. The impact of pressure and the inclusion of the Soret effect in the governing equations is assessed by comparing the resulting dispersion relation at atmospheric pressure and 10 atm. Our data indicate that both pressure and the Soret effects promote the onset of intrinsic instabilities. Comparisons with available numerical literature data as well as theoretical models are also discussed.
2024
Ammonia, Hydrogen, intrinsic flame instabilities, DNS, Thermal-diffusive instability
01 Pubblicazione su rivista::01a Articolo in rivista
Intrinsic instability of lean hydrogen/ammonia premixed flames: Influence of Soret effect and pressure / D'Alessio, Francesco; Matteucci, C.; Lapenna, P. E.; Creta, F.. - In: FUEL COMMUNICATIONS. - ISSN 2666-0520. - 19:(2024). [10.1016/j.jfueco.2024.100110]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1708907
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