The effect of natural gas composition on ignition delay has been investigated numerically by using detailed and reduced chemical kinetic mechanisms. Three different blends of natural gas have been analyzed at pressures and temperatures that are typical of top dead center conditions in compression ignition engines. The predicted ignition delay shows a decrease with temperature in an Arrhenius manner and has a first order dependence on pressure. Similar trends have been observed by Naber et al. [1] in their experimental study of natural gas autoignition in a bomb. It is shown that two kinetic mechanisms (GRI-Mech 1.2 and reduced set DRM22) are best capable of predicting the ignition delay of natural gas under compression ignition conditions. The DRM22 mechanism has been chosen for further studies as t involves lower computational costs compared to the full GRI-Mech 1.2 mechanism. Parametric studies have been performed using this mechanism to investigate the effect of fuel composition, ambient density, equivalence ratio and compression ratio on ignition delay of natural gas. The computations reveal a strong dependence of ignition delay on natural gas composition, with pure methane having the highest delay, followed by blends with increasing percentages of higher hydrocarbons.


    Zugriff

    Zugriff prüfen

    Verfügbarkeit in meiner Bibliothek prüfen

    Bestellung bei Subito €


    Exportieren, teilen und zitieren



    Titel :

    Modeling the Effect of Natural Gas Composition on Ignition Delay Under Compression Ignition Conditions


    Weitere Titelangaben:

    Sae Technical Papers


    Beteiligte:

    Kongress:

    SAE International Spring Fuels and Lubricants Meeting and Exposition ; 1997



    Erscheinungsdatum :

    1997-05-01




    Medientyp :

    Aufsatz (Konferenz)


    Format :

    Print


    Sprache :

    Englisch


    Schlagwörter :


    Modeling the effect of natural gas composition on ignition delay under compression ignition conditions

    Agarwal,A. / Assanis,D.N. / Univ.of Michigan,Ann Arbor,US | Kraftfahrwesen | 1997


    Multi-dimensional modeling of natural gas ignition under compression ignition conditions using detailed chemistry

    Agarwal,A. / Assanis,D.N. / Univ.of Michigan,Ann Arbor,US | Kraftfahrwesen | 1998



    DME-Propane Ignition Delay Time Measurements at Mixing Controlled Compression Ignition Engine-Relevant Conditions

    Urso, Justin / Pierro, Michael / Khaleel Rahman, Ramees et al. | SAE Technical Papers | 2023


    Ignition Delay Evaluation of Ethanol Blends in Compression Ignition Engines

    Sánchez, Fernando Zegarra / Pradelle, Florian Alain Yannick / de Souza Junior, Jorge Ricardo Moura et al. | SAE Technical Papers | 2024