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    Reduction of Combustion Gases’ Temperature and Heating Capacity by CO2 and H2 O Dissociation and NO Formation

    Source: Journal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 006::page 64503
    Author:
    Leonardo Flores
    ,
    Jaime Cervantes de Gortari
    DOI: 10.1115/1.4005983
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The combustion gases theoretical adiabatic temperatures are reduced to equilibrium temperatures mainly because of the endothermic reactions of CO2 and H2 O dissociation and NO formation. Therefore, the heating capacity of the gases is reduced to the equilibrium gases enthalpy. In the paper, these reactions and the way to consider them to calculate the gases’ final equilibrium are exemplified, covering an ample range of temperatures. It is shown the method sensitivity and the results are verified against some registered values. The procedure allows calculation of the NO formation, evidencing its increment with the temperature. The reductions in combustion gases’ adiabatic temperature and heating capacity are proportional to the theoretical adiabatic combustion temperature, apparent when the respective percentage decrements go from 2.2 and 2.7 at 2224 K to 46.8 and 50.9 at 7427 K for the studied combustion systems. This trend points out some maximum temperature reachable by oxidation, possibly 6000 K-the approximate energy emission sun temperature.
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      Reduction of Combustion Gases’ Temperature and Heating Capacity by CO2 and H2 O Dissociation and NO Formation

    URI
    https://yetl.yabesh.ir/yetl1/handle/yetl/148831
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    contributor authorLeonardo Flores
    contributor authorJaime Cervantes de Gortari
    date accessioned2017-05-09T00:50:16Z
    date available2017-05-09T00:50:16Z
    date copyrightJune, 2012
    date issued2012
    identifier issn1528-8919
    identifier otherJETPEZ-27196#064503_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/148831
    description abstractThe combustion gases theoretical adiabatic temperatures are reduced to equilibrium temperatures mainly because of the endothermic reactions of CO2 and H2 O dissociation and NO formation. Therefore, the heating capacity of the gases is reduced to the equilibrium gases enthalpy. In the paper, these reactions and the way to consider them to calculate the gases’ final equilibrium are exemplified, covering an ample range of temperatures. It is shown the method sensitivity and the results are verified against some registered values. The procedure allows calculation of the NO formation, evidencing its increment with the temperature. The reductions in combustion gases’ adiabatic temperature and heating capacity are proportional to the theoretical adiabatic combustion temperature, apparent when the respective percentage decrements go from 2.2 and 2.7 at 2224 K to 46.8 and 50.9 at 7427 K for the studied combustion systems. This trend points out some maximum temperature reachable by oxidation, possibly 6000 K-the approximate energy emission sun temperature.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleReduction of Combustion Gases’ Temperature and Heating Capacity by CO2 and H2 O Dissociation and NO Formation
    typeJournal Paper
    journal volume134
    journal issue6
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4005983
    journal fristpage64503
    identifier eissn0742-4795
    treeJournal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 006
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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