Global Energy Monitor, Global Plant Tracker, accessed in March 2022.
Vatopoulos, K., Andrews, D., Carlsson, J., Papaioannou, I., Zubi, G., et al. Study on the state of play of energy efficiency of heat and electricity production technologies. Relevant Report, 2012, SETIS, European Commission, 46–50.
Chatzimouratidis, A.I., Pilavachi, P.A., Technological, economic and sustainability evaluation of power plants using the Analytic Hierarchy Process. Energy Policy 37:3 (2009), 778–787.
Trudeau, N., Francoeur, M., Energy efficiency indicators for public electricity production from fossil fuels. Oil Market Report International Energy Agency, vol. 1, 2008, 1–23.
Fripp, M., Lifecycle greenhouse gas emissions from clean coal, clean gas and wind generators., 2009.
Dias, V., Pochet, M., Contino, F., Jeanmart, H., Energy and economic costs of chemical storage. Front. Mech. Eng., 6, 2020, 21.
Verleysen, K., Coppitters, D., Parente, A., Contino, F., Where to build the ideal solar-powered ammonia plant? Design optimization of a Belgian and Moroccan power-to-ammonia plant for covering the Belgian demand under uncertainties. Appl. Energy Combust. Sci., 14, 2023, 100141.
Hu, E., Huang, Z., He, J., Jin, C., Zheng, J., Experimental and numerical study on laminar burning characteristics of premixed methane–hydrogen–air flames. Int. J. Hydrog. Energy 34:11 (2009), 4876–4888.
Schefer, R.W., Wicksall, D., Agrawal, A.K., Combustion of hydrogen-enriched methane in a lean premixed swirl-stabilized burner. Proc. Combust. Inst. 29:1 (2002), 843–851.
Karlis, E., Liu, Y., Hardalupas, Y., Taylor, A.M., H2 enrichment of ch4 blends in lean premixed gas turbine combustion: an experimental study on effects on flame shape and thermoacoustic oscillation dynamics. Fuel, 254, 2019, 115524.
Global, E., Hydrogen gas turbines - The path to a zero emissions gas turbine. White paper, 2020, ETN.
Goldmeer, J., Catillaz, J., Hydrogen for Power Generation - Experience, Requirements, and Implications for Use in Gas Turbines. 2021, GE Gas Power.
Masakazu, N., Tomo, K., Hidefumi, A., Noriaki, S., Satoshi, T., Hydrogen-fired gas turbine targeting realization of CO2-free society. Mitsubishi Heavy Ind. Tech. Rev., 55, 12 2018.
Ciani, A., Bothien, M.R., Bunkute, B., Wood, J.P., Früchtel, G., Superior fuel and operational flexibility of sequential combustion in Ansaldo Energia gas turbines. J. Glob. Power Propuls. Soc. 3 (2019), 630–638.
Mashruk, S., Xiao, H., Valera-Medina, A., Rich-Quench-Lean model comparison for the clean use of humidified ammonia/hydrogen combustion systems. Int. J. Hydrog. Energy 46:5 (2021), 4472–4484.
Valera-Medina, A., Gutesa, M., Xiao, H., Pugh, D., Giles, A., Goktepe, B., Marsh, R., Bowen, P., Premixed ammonia/hydrogen swirl combustion under rich fuel conditions for gas turbines operation. Int. J. Hydrog. Energy 44:16 (2019), 8615–8626.
Rigaud, J., De Paepe, W., Laget, H., Thermodynamic assessment of the conversion of a typical CCGT power plant to a fully e-fuel fired unit. J. Eng. Gas Turbines Power, 144(12), 2022, 121012.
Bioche, K., Bricteux, L., Bertolino, A., Parente, A., Blondeau, J., Large Eddy Simulation of rich ammonia/hydrogen/air combustion in a gas turbine burner. Int. J. Hydrog. Energy 46:79 (2021), 39548–39562.
Bioche, K., Blondeau, J., Bricteux, L., Large eddy simulation investigation of pressure and wall heat loss effects on rich ammonia-hydrogen-air combustion in a gas turbine burner. Int. J. Hydrog. Energy 47:85 (2022), 36342–36353.
Directive, C., Directive 2010/75/EU of the European Parliament and of the Council. Off. J. Eur. Union L 334 (2010), 17–119.
Blondeau, J., Mertens, J., Impact of intermittent renewable energy production on specific CO2 and NOx emissions from large scale gas-fired combined cycles. J. Clean. Prod. 221 (2019), 261–270.
Soyler, I., Zhang, K., Duwig, C., Jiang, X., Karimi, N., Uncertainty quantification of the premixed combustion characteristics of NH3/H2/N2 fuel blends. Int. J. Hydrog. Energy 48:38 (2023), 14477–14491.
Capasso, V., Bakstein, D., An introduction to continuous-time stochastic processes. Modeling and Simulation in Science, Engineering and Technology, 2021, Birkhäuser, Cham, 247–302.
Song, Y.H., Chen, X.S., Lin, J., Liu, F., Qiu, Y.W., Stochastic processes in renewable power systems: from frequency domain to time domain. Sci. China, Technol. Sci. 62:12 (2019), 2093–2103.
Loukatou, A., Howell, S., Johnson, P., Duck, P., Stochastic wind speed modelling for estimation of expected wind power output. Appl. Energy 228 (2018), 1328–1340.
Loukatou, A., Johnson, P., Howell, S., Duck, P., Optimal valuation of wind energy projects co-located with battery storage. Appl. Energy, 283, 2021, 116247.
Verleysen, K., Parente, A., Contino, F., How does a resilient, flexible ammonia process look? Robust design optimization of a Haber-Bosch process with optimal dynamic control powered by wind. Proc. Combust. Inst. 39 (jan 2023), 5511–5520.
Petkovic, D., Banjac, M., Milic, S., Petrovic, M.V., Wiedermann, A., Modeling the transient behavior of gas turbines. J. Turbomach., 142(8), 2020, 081005.
MAN Energy SolutionsMGT6000 Single Shaft., 2020.
Bernt, O., Stochastic Differential Equations: an Introduction with Applications. 5th edition, 1998.
T. Gerstner, B. Harrach, D. Roth, Convergence of Milstein Brownian bridge Monte Carlo methods and stable Greeks calculation, 2021, pp. 1–27.
Goodwin, D., Cantera: Object-Oriented Software for Reacting Flows. 2005, California Institute for Technology (Caltech).
Goodwin, D.G., Moffat, H.K., Schoegl, I., Speth, R.L., Weber, B.W., Cantera: an Object-oriented Software Toolkit for Chemical Kinetics, Thermodynamics, and Transport Processes., 2023 Version 3.0.0.
Novosselov, I., Malte, P., Yuan, S., Srinivasan, R., Lee, J., Chemical reactor network application to emissions prediction for industrial dle gas turbine. Turbo Expo: Power for Land, Sea, and Air, vol. 42363, 2006, 221–235.
Lamioni, R., Mariotti, A., Salvetti, M.V., Galletti, C., Chemical Reactor Network modeling of ammonia–hydrogen combustion in a gas turbine: stochastic sensitivity analysis. Appl. Therm. Eng., 2024, 122734.
Zhang, Y., Mathieu, O., Petersen, E.L., Bourque, G., Curran, H.J., Assessing the predictions of a NOx kinetic mechanism on recent hydrogen and syngas experimental data. Combust. Flame 182 (2017), 122–141.
Coppitters, D., Tsirikoglou, P., Paepe, W.D., Kyprianidis, K., Kalfas, A., Contino, F., RHEIA: Robust design optimization of renewable Hydrogen and dErIved energy cArrier systems. J. Open Sour. Softw., 7(75), 2022, 4370.