Data-driven ship digital twin for estimating the speed loss caused by the marine fouling A Coraddu, L Oneto, F Baldi, F Cipollini, M Atlar, S Savio Ocean Engineering 186, 106063, 2019 | 213 | 2019 |
Shipping and the Environment K Andersson, F Baldi, S Brynolf, JF Lindgren, L Granhag, E Svensson Shipping and the environment: Improving environmental performance in marine …, 2016 | 186 | 2016 |
Vessels fuel consumption forecast and trim optimisation: A data analytics perspective A Coraddu, L Oneto, F Baldi, D Anguita Ocean Engineering 130, 351-370, 2017 | 184 | 2017 |
Energy and exergy analysis of a cruise ship F Baldi, F Ahlgren, TV Nguyen, C Gabrielii, K Andersson 28th International Conference on Efficiency, Cost, Optimization, Simulation …, 2015 | 153 | 2015 |
The role of solid oxide fuel cells in future ship energy systems F Baldi, S Moret, K Tammi, F Maréchal Energy 194, 116811, 2020 | 136 | 2020 |
A feasibility analysis of waste heat recovery systems for marine applications F Baldi, C Gabrielii Energy 80, 654-665, 2015 | 122 | 2015 |
Development of a combined mean value–zero dimensional model and application for a large marine four-stroke Diesel engine simulation F Baldi, G Theotokatos, K Andersson Applied Energy 154, 402-415, 2015 | 106 | 2015 |
Optimal load allocation of complex ship power plants F Baldi, F Ahlgren, F Melino, C Gabrielii, K Andersson Energy Conversion and Management 124, 344-356, 2016 | 101 | 2016 |
Efficiency improvement on a cruise ship: Load allocation optimization MA Ancona, F Baldi, M Bianchi, L Branchini, F Melino, A Peretto, J Rosati Energy Conversion and Management 164, 42-58, 2018 | 98 | 2018 |
Comparison of different procedures for the optimisation of a combined Diesel engine and organic Rankine cycle system based on ship operational profile F Baldi, U Larsen, C Gabrielii Ocean Engineering 110, 85-93, 2015 | 85 | 2015 |
Energy and exergy analysis of ship energy systems–the case study of a chemical tanker F Baldi, H Johnson, C Gabrielii, K Andersson International Journal of Thermodynamics 18 (2), 82-93, 2015 | 78 | 2015 |
A cogeneration system based on solid oxide and proton exchange membrane fuel cells with hybrid storage for off-grid applications F Baldi, L Wang, M Pérez-Fortes, F Maréchal Frontiers in Energy Research 6, 139, 2019 | 69 | 2019 |
Development of a model for the prediction of the fuel consumption and nitrogen oxides emission trade-off for large ships U Larsen, L Pierobon, F Baldi, F Haglind, A Ivarsson Energy 80, 545-555, 2015 | 62 | 2015 |
Ship efficiency forecast based on sensors data collection: Improving numerical models through data analytics A Coraddu, L Oneto, F Baldi, D Anguita OCEANS 2015-Genova, 1-10, 2015 | 44 | 2015 |
Energy efficiency and fuel changes to reduce environmental impacts S Brynolf, F Baldi, H Johnson Shipping and the Environment: Improving environmental performance in marine …, 2016 | 40 | 2016 |
Reducing the energy consumption of electric buses with design choices and predictive driving K Kivekäs, A Lajunen, F Baldi, J Vepsäläinen, K Tammi IEEE Transactions on Vehicular Technology 68 (12), 11409-11419, 2019 | 38 | 2019 |
Different approaches to improve energy consumption of battery electric buses A Lajunen, K Kivekäs, F Baldi, J Vepsäläinen, K Tammi 2018 IEEE Vehicle Power and Propulsion Conference (VPPC), 1-6, 2018 | 36 | 2018 |
From renewable energy to ship fuel: ammonia as an energy vector and mean for energy storage F Baldi, A Azzi, F Maréchal Computer Aided Chemical Engineering 46, 1747-1752, 2019 | 32 | 2019 |
Modelling, Analysis and Optimisation of Ship Energy Systems F Baldi Chalmers University of Technology, 2016 | 31 | 2016 |
Vessels fuel consumption: A data analytics perspective to sustainability A Coraddu, L Oneto, F Baldi, D Anguita Soft computing for sustainability science, 11-48, 2017 | 30 | 2017 |