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    Preliminary Experimental Results of Integrated Gasification Fuel Cell Operation Using Hardware Simulation

    Source: Journal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 007::page 71701
    Author:
    Alberto Traverso
    ,
    David Tucker
    ,
    Comas L. Haynes
    DOI: 10.1115/1.4005976
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: A newly developed integrated gasification fuel cell (IGFC) hybrid system concept has been tested using the Hybrid Performance (Hyper) project hardware-based simulation facility at the U.S. Department of Energy, National Energy Technology Laboratory. The cathode-loop hardware facility, previously connected to the real-time fuel cell model, was integrated with a real-time model of a gasifier of solid (biomass and fossil) fuel. The fuel cells are operated at the compressor delivery pressure, and they are fueled by an updraft atmospheric gasifier, through the syngas conditioning train for tar removal and syngas compression. The system was brought to steady state; then several perturbations in open loop (variable speed) and closed loop (constant speed) were performed in order to characterize the IGFC behavior. Coupled experiments and computations have shown the feasibility of relatively fast control of the plant as well as a possible mitigation strategy to reduce the thermal stress on the fuel cells as a consequence of load variation and change in gasifier operating conditions. Results also provided an insight into the different features of variable versus constant speed operation of the gas turbine section.
    keyword(s): Hardware , Fuel cells , Flow (Dynamics) , Fuel gasification , Gas turbines , Simulation , Syngas AND Temperature ,
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      Preliminary Experimental Results of Integrated Gasification Fuel Cell Operation Using Hardware Simulation

    URI
    https://yetl.yabesh.ir/yetl1/handle/yetl/148794
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    • Journal of Engineering for Gas Turbines and Power

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    contributor authorAlberto Traverso
    contributor authorDavid Tucker
    contributor authorComas L. Haynes
    date accessioned2017-05-09T00:50:11Z
    date available2017-05-09T00:50:11Z
    date copyrightJuly, 2012
    date issued2012
    identifier issn1528-8919
    identifier otherJETPEZ-27198#071701_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/148794
    description abstractA newly developed integrated gasification fuel cell (IGFC) hybrid system concept has been tested using the Hybrid Performance (Hyper) project hardware-based simulation facility at the U.S. Department of Energy, National Energy Technology Laboratory. The cathode-loop hardware facility, previously connected to the real-time fuel cell model, was integrated with a real-time model of a gasifier of solid (biomass and fossil) fuel. The fuel cells are operated at the compressor delivery pressure, and they are fueled by an updraft atmospheric gasifier, through the syngas conditioning train for tar removal and syngas compression. The system was brought to steady state; then several perturbations in open loop (variable speed) and closed loop (constant speed) were performed in order to characterize the IGFC behavior. Coupled experiments and computations have shown the feasibility of relatively fast control of the plant as well as a possible mitigation strategy to reduce the thermal stress on the fuel cells as a consequence of load variation and change in gasifier operating conditions. Results also provided an insight into the different features of variable versus constant speed operation of the gas turbine section.
    publisherThe American Society of Mechanical Engineers (ASME)
    titlePreliminary Experimental Results of Integrated Gasification Fuel Cell Operation Using Hardware Simulation
    typeJournal Paper
    journal volume134
    journal issue7
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4005976
    journal fristpage71701
    identifier eissn0742-4795
    keywordsHardware
    keywordsFuel cells
    keywordsFlow (Dynamics)
    keywordsFuel gasification
    keywordsGas turbines
    keywordsSimulation
    keywordsSyngas AND Temperature
    treeJournal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 007
    contenttypeFulltext
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