Numerical Simulation and Performance Evaluation of Hydrogen-Enriched Natural Gas for an Industrial Burner in a Testing Chamber
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Swaminathan, Senthilathiban
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Univ Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
K1 MET GmbH, Low Carbon Energy Syst, Area 3, Stahlstr 14, A-4020 Linz, AustriaUniv Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
Swaminathan, Senthilathiban
[1
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Spijker, Christoph
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Univ Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, AustriaUniv Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
Spijker, Christoph
[1
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Gruber, Markus
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RHI Magnesita GmbH, A-8700 Leoben, AustriaUniv Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
Gruber, Markus
[3
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Kofler, Irmela
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K1 MET GmbH, Low Carbon Energy Syst, Area 3, Stahlstr 14, A-4020 Linz, AustriaUniv Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
Kofler, Irmela
[2
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Raupenstrauch, Harald
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Univ Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, AustriaUniv Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
Raupenstrauch, Harald
[1
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机构:
[1] Univ Leoben, Chair Thermal Proc Technol, Franz Josef Str 18, A-8700 Leoben, Austria
[2] K1 MET GmbH, Low Carbon Energy Syst, Area 3, Stahlstr 14, A-4020 Linz, Austria
A two-step numerical concept was developed for modelling combustion and predicting nitrogen oxide emissions. The model was validated by the Sandia flame D experiment and with measurement data from burners on industrial furnaces. In this paper, the developed model was implemented to evaluate the influence of hydrogen blending with natural gas up to 40 vol.% on an industrial burner with oxidizer temperatures at 300 K and 813 K to assess the performance of the burner without altering the power output of the burner. An experimental test facility is under construction, and the feasibility of using this industrial burner on the test facility with different fuel mixtures was analyzed. Temperature, flow field, and emission characteristics were investigated. Using 40 vol.% hydrogen with natural gas resulted in a decrease of 14.82% in CO(2 )emissions and an increase of in 16.1% NO emissions when combusted with air at 300 K. The temperature profile indicated that the burner produces a symmetrical flame profile with preheated air and an asymmetrical flame profile with ambient air.
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Univ Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Tian, Xu
Zhou, Heng
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Univ Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Zhou, Heng
Zhang, Yichun
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Hansteel Co Ltd, HBIS Grp, Handan 056015, Hebei, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Zhang, Yichun
Zhang, Tao
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Hansteel Co Ltd, HBIS Grp, Handan 056015, Hebei, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Zhang, Tao
Huang, Jiang
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Univ Sci & Technol Beijing, Sch Automat & Elect Engn, Beijing 100083, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Huang, Jiang
Cai, Haoyu
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Beijing Jianlong Heavy Ind Grp Co Ltd, Beijing 100070, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Cai, Haoyu
Kou, Mingyin
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Univ Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
Kou, Mingyin
Wu, Shengli
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Univ Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R ChinaUniv Sci & Technol Beijing, State Key Lab Adv Met, Beijing 100083, Peoples R China
机构:
Xi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R ChinaXi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R China
Miao, Haiyan
Jiao, Qi
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Xi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R ChinaXi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R China
Jiao, Qi
Huang, Zuohua
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Xi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R ChinaXi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R China
Huang, Zuohua
Jiang, Deming
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Xi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R ChinaXi An Jiao Tong Univ, Sch Energy & Power Eng, State Key Lab Multiphase Flow Power Engn, Xian, Peoples R China
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Graz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, AustriaGraz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, Austria
Schwarz, Stefan
Daurer, Georg
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Graz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, AustriaGraz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, Austria
Daurer, Georg
Gaber, Christian
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Messer Austria GmbH, Industriestraße 5, Gumpoldskirchen,2352, AustriaGraz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, Austria
Gaber, Christian
Demuth, Martin
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Messer Austria GmbH, Industriestraße 5, Gumpoldskirchen,2352, AustriaGraz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, Austria
Demuth, Martin
Prieler, Renè
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Graz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, AustriaGraz University of Technology, Institute of Thermal Engineering, Inffeldgasse 25/B, Graz,8010, Austria