• Treffer 4 von 10
Zurück zur Trefferliste

CFD Based Improvement of the DLN Hydrogen Micromix Combustion Technology at Increased Energy Densities

  • Combined with the use of renewable energy sources for its production, Hydrogen represents a possible alternative gas turbine fuel within future low emission power generation. Due to the large difference in the physical properties of Hydrogen compared to other fuels such as natural gas, well established gas turbine combustion systems cannot be directly applied for Dry Low NOx (DLN) Hydrogen combustion. Thus, the development of DLN combustion technologies is an essential and challenging task for the future of Hydrogen fuelled gas turbines. The DLN Micromix combustion principle for hydrogen fuel has been developed to significantly reduce NOx-emissions. This combustion principle is based on cross-flow mixing of air and gaseous hydrogen which reacts in multiple miniaturized diffusion-type flames. The major advantages of this combustion principle are the inherent safety against flash-back and the low NOx-emissions due to a very short residence time of reactants in the flame region of the micro-flames. The Micromix Combustion technology has been already proven experimentally and numerically for pure Hydrogen fuel operation at different energy density levels. The aim of the present study is to analyze the influence of different geometry parameter variations on the flame structure and the NOx emission and to identify the most relevant design parameters, aiming to provide a physical understanding of the Micromix flame sensitivity to the burner design and identify further optimization potential of this innovative combustion technology while increasing its energy density and making it mature enough for real gas turbine application. The study reveals great optimization potential of the Micromix Combustion technology with respect to the DLN characteristics and gives insight into the impact of geometry modifications on flame structure and NOx emission. This allows to further increase the energy density of the Micromix burners and to integrate this technology in industrial gas turbines.

Metadaten exportieren

Weitere Dienste

Teilen auf Twitter Suche bei Google Scholar
Metadaten
Verfasserangaben:Anis Haj Ayed, Karsten Kusterer, Harald FunkeORCiD, Jan Keinz
ISSN:2313-4402
Titel des übergeordneten Werkes (Englisch):American Scientific Research Journal for Engineering, Technology, and Sciences (ASRJETS)
Verlag:GSSRR
Dokumentart:Wissenschaftlicher Artikel
Sprache:Englisch
Erscheinungsjahr:2016
Datum der Publikation (Server):22.12.2016
Jahrgang:26
Ausgabe / Heft:3
Erste Seite:290
Letzte Seite:303
Link:http://asrjetsjournal.org/index.php/American_Scientific_Journal/article/view/2285
Zugriffsart:weltweit
Fachbereiche und Einrichtungen:FH Aachen / Fachbereich Luft- und Raumfahrttechnik
collections:Verlag / GSSRR
Open Access / Gold
Lizenz (Deutsch):License LogoCreative Commons - Namensnennung-Nicht kommerziell-Keine Bearbeitung