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    Performance of a Multiple Injection Dry Low NOx Combustor With Hydrogen Rich Syngas Fuels

    Source: Journal of Engineering for Gas Turbines and Power:;2013:;volume( 135 ):;issue: 001::page 11501
    Author:
    Dodo, Satoschi
    ,
    Asai, Tomohiro
    ,
    Koizumi, Hiromi
    ,
    Takahashi, Hirokazu
    ,
    Yoshida, Shouhei
    ,
    Inoue, Hiroshi
    DOI: 10.1115/1.4006691
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: An oxygenblown integrated coal gasification combined cycle (IGCC) plant with precombustion carbon dioxide capture and storage (CCS) is one of the most promising means of zeroemission generation of power from coal. In an IGCC plant with CCS, hydrogenrich syngas with a wide variation of hydrogen contents is supplied to a gas turbine. Such hydrogenrich syngas poses a great challenge to a low NOx combustor based on premixed combustion technology, because its high flame speed, low ignition energy, and broad flammability limits can cause flashback and/or autoignition. On the contrary, a diffusion combustor suffers from the high flame temperature of syngas and the resulting high NOx emission. The authors applied a “multiinjection burnerâ€‌ concept to a preliminary burner for hydrogenrich syngas simulating that from IGCC with CCS. In a preliminary experiment under atmospheric pressure, the multiinjection burner worked without any flashback or any blowout. A prototype multicluster combustor based on the results of that preliminary study was made to be a dry low NOx combustor for hydrogenrich syngas of IGCC with CCS. It was tested in experiments, which were carried out under medium pressure (0.6 MPa) using test fuels simulating syngas from IGCC with a 0% carbon capture rate, a 30% carbon capture rate, and a 50% carbon capture rate. The test fuels contained hydrogen, methane, and nitrogen, and had a hydrogen content ranging from 40% to 65%.The following conclusions were drawn from the test results: (1) the tested combustor allows the stable combustion of fuels simulating 0%, 30%, and 50% CCS, (2) a convex perforated plate swirler is effective to suppress combustion oscillation, which allows NOx emissions to be less than 10 ppm through the variation of fuel simulating 0%, 30%, and 50% CCS, (3) the extended stable combustion region and enhanced entrainment and mixing due to the convex perforated plate improves the cooling of the combustor liner metal to be less than the liner metal temperature criterion.
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      Performance of a Multiple Injection Dry Low NOx Combustor With Hydrogen Rich Syngas Fuels

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    contributor authorDodo, Satoschi
    contributor authorAsai, Tomohiro
    contributor authorKoizumi, Hiromi
    contributor authorTakahashi, Hirokazu
    contributor authorYoshida, Shouhei
    contributor authorInoue, Hiroshi
    date accessioned2017-05-09T00:57:56Z
    date available2017-05-09T00:57:56Z
    date issued2013
    identifier issn1528-8919
    identifier othergtp_135_1_011501.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/151520
    description abstractAn oxygenblown integrated coal gasification combined cycle (IGCC) plant with precombustion carbon dioxide capture and storage (CCS) is one of the most promising means of zeroemission generation of power from coal. In an IGCC plant with CCS, hydrogenrich syngas with a wide variation of hydrogen contents is supplied to a gas turbine. Such hydrogenrich syngas poses a great challenge to a low NOx combustor based on premixed combustion technology, because its high flame speed, low ignition energy, and broad flammability limits can cause flashback and/or autoignition. On the contrary, a diffusion combustor suffers from the high flame temperature of syngas and the resulting high NOx emission. The authors applied a “multiinjection burnerâ€‌ concept to a preliminary burner for hydrogenrich syngas simulating that from IGCC with CCS. In a preliminary experiment under atmospheric pressure, the multiinjection burner worked without any flashback or any blowout. A prototype multicluster combustor based on the results of that preliminary study was made to be a dry low NOx combustor for hydrogenrich syngas of IGCC with CCS. It was tested in experiments, which were carried out under medium pressure (0.6 MPa) using test fuels simulating syngas from IGCC with a 0% carbon capture rate, a 30% carbon capture rate, and a 50% carbon capture rate. The test fuels contained hydrogen, methane, and nitrogen, and had a hydrogen content ranging from 40% to 65%.The following conclusions were drawn from the test results: (1) the tested combustor allows the stable combustion of fuels simulating 0%, 30%, and 50% CCS, (2) a convex perforated plate swirler is effective to suppress combustion oscillation, which allows NOx emissions to be less than 10 ppm through the variation of fuel simulating 0%, 30%, and 50% CCS, (3) the extended stable combustion region and enhanced entrainment and mixing due to the convex perforated plate improves the cooling of the combustor liner metal to be less than the liner metal temperature criterion.
    publisherThe American Society of Mechanical Engineers (ASME)
    titlePerformance of a Multiple Injection Dry Low NOx Combustor With Hydrogen Rich Syngas Fuels
    typeJournal Paper
    journal volume135
    journal issue1
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4006691
    journal fristpage11501
    journal lastpage11501
    identifier eissn0742-4795
    treeJournal of Engineering for Gas Turbines and Power:;2013:;volume( 135 ):;issue: 001
    contenttypeFulltext
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