Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends

This study deals with implementing an analytical model to simulate the energy performance associated with a Micro Gas Turbine when H2NG (Hydrogen Enriched Natural Gas) blends are used as fuel. The experimental campaign validated the simulation results at the actual operating conditions of the Micro...

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Autores principales: Barati Shahrokh, De Santoli Livio, Basso Gianluigi Lo
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FR
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/5edbbf1ebf8b4dd98f8b74c1c6cf8dee
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spelling oai:doaj.org-article:5edbbf1ebf8b4dd98f8b74c1c6cf8dee2021-11-08T15:18:51ZModeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends2267-124210.1051/e3sconf/202131208012https://doaj.org/article/5edbbf1ebf8b4dd98f8b74c1c6cf8dee2021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/88/e3sconf_ati2021_08012.pdfhttps://doaj.org/toc/2267-1242This study deals with implementing an analytical model to simulate the energy performance associated with a Micro Gas Turbine when H2NG (Hydrogen Enriched Natural Gas) blends are used as fuel. The experimental campaign validated the simulation results at the actual operating conditions of the Micro Gas Turbine. The experimental campaign for model validation has been carried out over the spring and summer periods. Additionally, the MGT performance has been detected when fuelled H2NG with hydrogen fraction ranges between 0% vol. to 10% vol., with a 2% vol. Step., according to the main findings, the fuel consumption is reduced significantly. Also, heat recovery and electrical reliability improve slightly even though environmental factors influence the system. A numerical model was developed with MATLAB-Simulink to model the operation of the MGT. Thus, the relative standard errors affecting the main output parameters have been determined.Barati ShahrokhDe Santoli LivioBasso Gianluigi LoEDP SciencesarticleEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 312, p 08012 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic Environmental sciences
GE1-350
spellingShingle Environmental sciences
GE1-350
Barati Shahrokh
De Santoli Livio
Basso Gianluigi Lo
Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
description This study deals with implementing an analytical model to simulate the energy performance associated with a Micro Gas Turbine when H2NG (Hydrogen Enriched Natural Gas) blends are used as fuel. The experimental campaign validated the simulation results at the actual operating conditions of the Micro Gas Turbine. The experimental campaign for model validation has been carried out over the spring and summer periods. Additionally, the MGT performance has been detected when fuelled H2NG with hydrogen fraction ranges between 0% vol. to 10% vol., with a 2% vol. Step., according to the main findings, the fuel consumption is reduced significantly. Also, heat recovery and electrical reliability improve slightly even though environmental factors influence the system. A numerical model was developed with MATLAB-Simulink to model the operation of the MGT. Thus, the relative standard errors affecting the main output parameters have been determined.
format article
author Barati Shahrokh
De Santoli Livio
Basso Gianluigi Lo
author_facet Barati Shahrokh
De Santoli Livio
Basso Gianluigi Lo
author_sort Barati Shahrokh
title Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
title_short Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
title_full Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
title_fullStr Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
title_full_unstemmed Modeling and Analysis of a Micro Gas Turbine Fuelled with Hydrogen and Natural Gas Blends
title_sort modeling and analysis of a micro gas turbine fuelled with hydrogen and natural gas blends
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/5edbbf1ebf8b4dd98f8b74c1c6cf8dee
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AT desantolilivio modelingandanalysisofamicrogasturbinefuelledwithhydrogenandnaturalgasblends
AT bassogianluigilo modelingandanalysisofamicrogasturbinefuelledwithhydrogenandnaturalgasblends
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