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    Large Eddy Simulation Studies on Effects of Soot Productivity in a Momentum Dominated Strained Diffusion Jet Flames

    Source: Journal of Energy Resources Technology:;2022:;volume( 145 ):;issue: 004::page 42302-1
    Author:
    N.H., Mohamed Ibrahim
    ,
    Udayakumar, M.
    ,
    Balasubramanian, Dhinesh
    ,
    Tran, Viet Dung
    ,
    Truong, Thanh Hai
    ,
    Nguyen, Van Nhanh
    DOI: 10.1115/1.4055539
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The present numerical study is to determine the soot volume fraction, rate of soot nucleation, rate of coagulation, rate of surface growth, and rate of surface oxidation for flame configurations having the fuel mixture composition of C2H4: H2: N2 (63.4: 4.7: 31.9% by mass) along with air. The Brookes–Moss–Hall and OH oxidation radical is coupled with the combustion and P−1 radiation model. The inputs needed for this numerical study to determine soot volume fraction are maintained the same as the earlier experimental conditions. The hyperbolic function in the governing models is interpolated with quadratic upwind interpolation for convective kinetics, diffusion function with second-order upwind in space, and bounded second-order implicit in time. A suitable pressure implicit method for splitting operators, and a pressure–velocity coupler are also incorporated to evaluate pressure to satisfy continuity. The above governing models are solved using the ILU method with a unity Courant–Friedrichs–Lewy number. It is observed that along the axial direction, the flame with 12,900 s−1 shows higher rate of soot nucleation and rate of soot coagulation compared with the flame having lower strain rate. Also, the highest strain rate flame shows the lowest rate of soot surface growth, and also the rate of soot oxidation is the least.
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      Large Eddy Simulation Studies on Effects of Soot Productivity in a Momentum Dominated Strained Diffusion Jet Flames

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4292127
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    • Journal of Energy Resources Technology

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    contributor authorN.H., Mohamed Ibrahim
    contributor authorUdayakumar, M.
    contributor authorBalasubramanian, Dhinesh
    contributor authorTran, Viet Dung
    contributor authorTruong, Thanh Hai
    contributor authorNguyen, Van Nhanh
    date accessioned2023-08-16T18:33:19Z
    date available2023-08-16T18:33:19Z
    date copyright11/2/2022 12:00:00 AM
    date issued2022
    identifier issn0195-0738
    identifier otherjert_145_4_042302.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4292127
    description abstractThe present numerical study is to determine the soot volume fraction, rate of soot nucleation, rate of coagulation, rate of surface growth, and rate of surface oxidation for flame configurations having the fuel mixture composition of C2H4: H2: N2 (63.4: 4.7: 31.9% by mass) along with air. The Brookes–Moss–Hall and OH oxidation radical is coupled with the combustion and P−1 radiation model. The inputs needed for this numerical study to determine soot volume fraction are maintained the same as the earlier experimental conditions. The hyperbolic function in the governing models is interpolated with quadratic upwind interpolation for convective kinetics, diffusion function with second-order upwind in space, and bounded second-order implicit in time. A suitable pressure implicit method for splitting operators, and a pressure–velocity coupler are also incorporated to evaluate pressure to satisfy continuity. The above governing models are solved using the ILU method with a unity Courant–Friedrichs–Lewy number. It is observed that along the axial direction, the flame with 12,900 s−1 shows higher rate of soot nucleation and rate of soot coagulation compared with the flame having lower strain rate. Also, the highest strain rate flame shows the lowest rate of soot surface growth, and also the rate of soot oxidation is the least.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleLarge Eddy Simulation Studies on Effects of Soot Productivity in a Momentum Dominated Strained Diffusion Jet Flames
    typeJournal Paper
    journal volume145
    journal issue4
    journal titleJournal of Energy Resources Technology
    identifier doi10.1115/1.4055539
    journal fristpage42302-1
    journal lastpage42302-14
    page14
    treeJournal of Energy Resources Technology:;2022:;volume( 145 ):;issue: 004
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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