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    Impact of Syngas Addition to Methane on Laminar Burning Velocity

    Source: Journal of Engineering for Gas Turbines and Power:;2021:;volume( 143 ):;issue: 005::page 051004-1
    Author:
    Morovatiyan, Mohammadrasool
    ,
    Shahsavan, Martia
    ,
    Baghirzade, Mammadbaghir
    ,
    Mack, J. Hunter
    DOI: 10.1115/1.4049012
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Exhaust gas recirculation (EGR) in spark-ignited (SI) engines is a key technique to reduce in-cylinder NOx production by decreasing the combustion temperature. The major species of the exhaust gas in rich combustion of natural gas are hydrogen and carbon monoxide, which can subsequently be recirculated to the cylinders using EGR. In this study, the effect of hydrogen and carbon monoxide addition to methane on laminar burning velocity and flame morphology is investigated. Due to the broad flammability limit and high burning velocity of hydrogen compared to methane, this addition to the gaseous mixture leads to an increase in burning velocity, less emissions production, and a boost to the thermal efficiency of internal combustion engines. Premixed CH4–H2–CO–air flames are experimentally investigated using an optically accessible constant volume combustion chamber (CVCC) accompanied with a high-speed Z-type Schlieren imaging system. Furthermore, a numerical code is applied to quantify the laminar burning velocity based on the pressure rise during flame propagation within the CVCC. According to the empirical and numerical results, the addition of hydrogen and carbon monoxide enhances laminar burning velocity while influencing the flame structure and development.
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      Impact of Syngas Addition to Methane on Laminar Burning Velocity

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    contributor authorMorovatiyan, Mohammadrasool
    contributor authorShahsavan, Martia
    contributor authorBaghirzade, Mammadbaghir
    contributor authorMack, J. Hunter
    date accessioned2022-02-05T22:21:24Z
    date available2022-02-05T22:21:24Z
    date copyright3/11/2021 12:00:00 AM
    date issued2021
    identifier issn0742-4795
    identifier othergtp_143_05_051004.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4277391
    description abstractExhaust gas recirculation (EGR) in spark-ignited (SI) engines is a key technique to reduce in-cylinder NOx production by decreasing the combustion temperature. The major species of the exhaust gas in rich combustion of natural gas are hydrogen and carbon monoxide, which can subsequently be recirculated to the cylinders using EGR. In this study, the effect of hydrogen and carbon monoxide addition to methane on laminar burning velocity and flame morphology is investigated. Due to the broad flammability limit and high burning velocity of hydrogen compared to methane, this addition to the gaseous mixture leads to an increase in burning velocity, less emissions production, and a boost to the thermal efficiency of internal combustion engines. Premixed CH4–H2–CO–air flames are experimentally investigated using an optically accessible constant volume combustion chamber (CVCC) accompanied with a high-speed Z-type Schlieren imaging system. Furthermore, a numerical code is applied to quantify the laminar burning velocity based on the pressure rise during flame propagation within the CVCC. According to the empirical and numerical results, the addition of hydrogen and carbon monoxide enhances laminar burning velocity while influencing the flame structure and development.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleImpact of Syngas Addition to Methane on Laminar Burning Velocity
    typeJournal Paper
    journal volume143
    journal issue5
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4049012
    journal fristpage051004-1
    journal lastpage051004-9
    page9
    treeJournal of Engineering for Gas Turbines and Power:;2021:;volume( 143 ):;issue: 005
    contenttypeFulltext
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