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1-20 of 25
Matteo Cerutti
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Proceedings Papers
Modeling and Predicting Deflagration Phenomena in Hydrogen-Enriched Gas Turbine Exhausts: A CFD Approach
Available to Purchase
Proc. ASME. GT2024, Volume 3B: Combustion, Fuels, and Emissions, V03BT04A043, June 24–28, 2024
Publisher: American Society of Mechanical Engineers
Paper No: GT2024-128717
Journal Articles
Modeling Ammonia-Hydrogen-Air Combustion and Emission Characteristics of a Generic Swirl Burner
Available to PurchaseLuca Mazzotta, Rachele Lamioni, Francesco D'Alessio, Roberto Meloni, Steven Morris, Burak Goktepe, Matteo Cerutti, Christian Romano, Francesco Creta, Chiara Galletti, Domenico Borello, Agustin Valera-Medina
Publisher: ASME
Article Type: Research-Article
J. Eng. Gas Turbines Power. September 2024, 146(9): 091022.
Paper No: GTP-24-1032
Published Online: April 8, 2024
Proceedings Papers
Modelling Ammonia-Hydrogen-Air Combustion and Emission Characteristics of a Generic Swirl Burner
Available to PurchaseLuca Mazzotta, Francesco D’Alessio, Roberto Meloni, Steve Morris, Burak Goktepe, Rachele Lamioni, Matteo Cerutti, Christian Romano, Chiara Galletti, Francesco Creta, Domenico Borello, Agustin Valera-Medina
Proc. ASME. GT2023, Volume 2: Ceramics and Ceramic Composites; Coal, Biomass, Hydrogen, and Alternative Fuels, V002T03A016, June 26–30, 2023
Publisher: American Society of Mechanical Engineers
Paper No: GT2023-102803
Journal Articles
Experimental and Numerical Characterization of a Novel Natural Gas Low NO x Burner in Gas Turbine Realistic Environment
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Eng. Gas Turbines Power. July 2021, 143(7): 071018.
Paper No: GTP-20-1437
Published Online: March 31, 2021
Proceedings Papers
Numerical Modelling of NOx Emissions and Flame Stabilization Mechanisms in Gas Turbine Burners Operating With Hydrogen and Hydrogen-Methane Blends
Available to Purchase
Proc. ASME. GT2020, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A011, September 21–25, 2020
Publisher: American Society of Mechanical Engineers
Paper No: GT2020-15432
Proceedings Papers
Experimental and Numerical Characterization of a Novel Natural Gas Low NOx Burner in Gas Turbine Realistic Environment
Available to Purchase
Proc. ASME. GT2020, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A063, September 21–25, 2020
Publisher: American Society of Mechanical Engineers
Paper No: GT2020-16238
Journal Articles
Numerical Investigations of Pollutant Emissions From Novel Heavy-Duty Gas Turbine Burners Operated With Natural Gas
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Eng. Gas Turbines Power. March 2020, 142(3): 031025.
Paper No: GTP-19-1410
Published Online: February 14, 2020
Proceedings Papers
Effect of Natural Gas Composition on Low NOx Burners Operation in Heavy Duty Gas Turbine
Available to Purchase
Proc. ASME. GT2019, Volume 4A: Combustion, Fuels, and Emissions, V04AT04A058, June 17–21, 2019
Publisher: American Society of Mechanical Engineers
Paper No: GT2019-90903
Proceedings Papers
Numerical Investigations of Pollutant Emissions From Novel Heavy Duty Gas Turbine Burners Operated With Natural Gas
Available to Purchase
Proc. ASME. GT2019, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A022, June 17–21, 2019
Publisher: American Society of Mechanical Engineers
Paper No: GT2019-91365
Proceedings Papers
Combustion Instabilities Damping System Development for Dry Low NOx Emissions Operability Enhancement of a Heavy-Duty Gas Turbine
Available to PurchaseMatteo Cerutti, Nicola Giannini, Bruno Schuermans, Riccardo Brenci, Alessandro Marini, Gianni Ceccherini, Giovanni Riccio
Proc. ASME. GT2019, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A017, June 17–21, 2019
Publisher: American Society of Mechanical Engineers
Paper No: GT2019-91246
Proceedings Papers
Improving Emission and Blow-Out Characteristics of Novel Natural Gas Low NOx Burners for Heavy Duty Gas Turbine
Available to Purchase
Proc. ASME. GT2019, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A015, June 17–21, 2019
Publisher: American Society of Mechanical Engineers
Paper No: GT2019-91235
Journal Articles
Effect of Natural Gas Composition on Low No x Burners Operation in Heavy Duty Gas Turbine
Available to Purchase
Publisher: ASME
Article Type: Technical Briefs
J. Eng. Gas Turbines Power. November 2019, 141(11): 114501.
Paper No: GTP-19-1491
Published Online: October 1, 2019
Journal Articles
Experimental and Numerical Investigations of Novel Natural Gas Low NO x Burners for Heavy Duty Gas Turbine
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Eng. Gas Turbines Power. February 2019, 141(2): 021006.
Paper No: GTP-18-1344
Published Online: September 21, 2018
Proceedings Papers
Experimental and Numerical Investigations of Novel Natural Gas Low NOx Burners for Heavy Duty Gas Turbine
Available to Purchase
Proc. ASME. GT2018, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A031, June 11–15, 2018
Publisher: American Society of Mechanical Engineers
Paper No: GT2018-76670
Proceedings Papers
Dry Low NOx Emissions Operability Enhancement of a Heavy-Duty Gas Turbine by Means of Fuel Burner Design Development and Testing
Available to PurchaseMatteo Cerutti, Nicola Giannini, Gianni Ceccherini, Roberto Meloni, Emanuele Matoni, Christian Romano, Giovanni Riccio
Proc. ASME. GT2018, Volume 4B: Combustion, Fuels, and Emissions, V04BT04A029, June 11–15, 2018
Publisher: American Society of Mechanical Engineers
Paper No: GT2018-76587
Proceedings Papers
Cooling System Optimization of Combustor Liners
Available to Purchase
Proc. ASME. GT2017, Volume 5A: Heat Transfer, V05AT20A005, June 26–30, 2017
Publisher: American Society of Mechanical Engineers
Paper No: GT2017-64758
Proceedings Papers
Numerical Analysis of the Dynamic Flame Response and Thermo-Acoustic Stability of a Full-Annular Lean Partially-Premixed Combustor
Available to Purchase
Proc. ASME. GT2016, Volume 4B: Combustion, Fuels and Emissions, V04BT04A003, June 13–17, 2016
Publisher: American Society of Mechanical Engineers
Paper No: GT2016-57182
Proceedings Papers
Design Improvement Survey for NO x Emissions Reduction of a Heavy-Duty Gas Turbine Partially Premixed Fuel Nozzle Operating With Natural Gas: Numerical Assessment
Available to PurchaseAlessandro Innocenti, Antonio Andreini, Bruno Facchini, Matteo Cerutti, Gianni Ceccherini, Giovanni Riccio
Proc. ASME. GT2015, Volume 4A: Combustion, Fuels and Emissions, V04AT04A056, June 15–19, 2015
Publisher: American Society of Mechanical Engineers
Paper No: GT2015-42730
Proceedings Papers
Design Improvement Survey for NOx Emissions Reduction of a Heavy-Duty Gas Turbine Partially Premixed Fuel Nozzle Operating With Natural Gas: Experimental Campaign
Available to Purchase
Proc. ASME. GT2015, Volume 4B: Combustion, Fuels and Emissions, V04BT04A038, June 15–19, 2015
Publisher: American Society of Mechanical Engineers
Paper No: GT2015-43516
Journal Articles
Design Improvement Survey for NO x Emissions Reduction of a Heavy-Duty Gas Turbine Partially Premixed Fuel Nozzle Operating With Natural Gas: Numerical Assessment
Available to PurchaseAlessandro Innocenti, Antonio Andreini, Bruno Facchini, Matteo Cerutti, Gianni Ceccherini, Giovanni Riccio
Publisher: ASME
Article Type: Research-Article
J. Eng. Gas Turbines Power. January 2016, 138(1): 011501.
Paper No: GTP-15-1324
Published Online: August 12, 2015
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