Conventional and advanced exergetic analyses applied to a combined cycle power plant F Petrakopoulou, G Tsatsaronis, T Morosuk, A Carassai Energy 41 (1), 146-152, 2012 | 289 | 2012 |
Conventional and advanced Exergetic Analyses applied to a combined cycle power plant F Petrakopoulou, G Tsatsaronis, T Morosuk, A Carassai ECOS2010, 2010 | 289 | 2010 |
Exergoeconomic and exergoenvironmental analyses of a combined cycle power plant with chemical looping technology F Petrakopoulou, A Boyano, M Cabrera, G Tsatsaronis International Journal of Greenhouse Gas Control 5 (3), 475-482, 2011 | 209 | 2011 |
Environmental and exergetic evaluation of hydrogen production via lignocellulosic biomass gasification D Iribarren, A Susmozas, F Petrakopoulou, J Dufour Journal of Cleaner Production 69, 165-175, 2014 | 178 | 2014 |
Comparative evaluation of power plants with CO2 capture: thermodynamic, economic and environmental performance F Petrakopoulou Berlin Technical University, Institut für Energietechnik, 2010 | 130 | 2010 |
Exergetic analysis of a fast pyrolysis process for bio-oil production JF Peters, F Petrakopoulou, J Dufour Fuel Processing Technology 119, 245-255, 2014 | 109 | 2014 |
Environmental evaluation of a power plant using conventional and advanced exergy-based methods F Petrakopoulou, G Tsatsaronis, T Morosuk, C Paitazoglou Energy, dx.doi.org/10.1016/j.energy.2012.01.042, 2012 | 108 | 2012 |
Exergoeconomic and exergoenvironmental evaluation of power plants including CO2 capture F Petrakopoulou, G Tsatsaronis, A Boyano, T Morosuk Chemical Engineering Research and Design 89 (9), 1461-1469, 2011 | 87 | 2011 |
Environmental and thermodynamic evaluation of CO2 capture, transport and storage with and without enhanced resource recovery D Iribarren, F Petrakopoulou, J Dufour Energy 50, 477-485, 2013 | 74 | 2013 |
Simulation and analysis of a stand-alone solar-wind and pumped-storage hydropower plant F Petrakopoulou, A Robinson, M Loizidou Energy 96, 676-683, 2016 | 69 | 2016 |
Advanced Exergoeconomic Analysis applied to a complex energy conversion system F Petrakopoulou, G Tsatsaronis, T Morosuk, A Carassai IMECE2010, 2010 | 61 | 2010 |
A solar-driven 5th generation district heating and cooling network with ground-source heat pumps: a thermo-economic analysis F Calise, FL Cappiello, MD d'Accadia, F Petrakopoulou, M Vicidomini Sustainable Cities and Society 76, 103438, 2022 | 57 | 2022 |
Exergy analysis of synthetic biofuel production via fast pyrolysis and hydroupgrading JF Peters, F Petrakopoulou, J Dufour Energy 79, 325-336, 2015 | 56 | 2015 |
Evaluation of a power plant with chemical looping combustion using an advanced exergoeconomic analysis F Petrakopoulou, G Tsatsaronis, T Morosuk Sustainable Energy Technologies and Assessments 3, 9-16, 2013 | 53 | 2013 |
On the economics of stand-alone renewable hybrid power plants in remote regions F Petrakopoulou Energy Conversion and Management 118, 63-74, 2016 | 51 | 2016 |
Simulation and evaluation of a hybrid concentrating-solar and wind power plant for energy autonomy on islands F Petrakopoulou, A Robinson, M Loizidou Renewable Energy 96, 863-871, 2016 | 49 | 2016 |
Advanced exergoeconomic analysis applied to a complex energy conversion system F Petrakopoulou, G Tsatsaronis, T Morosuk, A Carassai | 47 | 2012 |
Comprehensive thermodynamic and operational optimization of a solar-assisted LiBr/water absorption refrigeration system S Sharifi, FN Heravi, R Shirmohammadi, R Ghasempour, F Petrakopoulou, ... Energy Reports 6, 2309-2323, 2020 | 42 | 2020 |
Conventional exergetic and exergoeconomic analyses of a power plant with chemical looping combustion for CO2 capture F Petrakopoulou, G Tsatsaronis, T Morosuk International Journal of Thermodynamics 13 (3), 77-86, 2010 | 40 | 2010 |
Advanced exergoenvironmental analysis of a near-zero emission power plant with chemical looping combustion F Petrakopoulou, G Tsatsaronis, T Morosuk Environmental Science & Technology, doi: 10.1021/es203430b, 2012 | 38 | 2012 |