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Implementing the dynamic simulation approach for the design and optimization of ships energy systems: Methodology and applicability to modern cruise ships. (2021). Barone, G ; Forzano, C ; Palombo, A ; Buonomano, A.
In: Renewable and Sustainable Energy Reviews.
RePEc:eee:rensus:v:150:y:2021:i:c:s1364032121007693.

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  2. Energy modelling challenges for the full decarbonisation of hard-to-abate sectors. (2025). Pastore, Lorenzo Mario ; Groppi, Daniele ; de Santoli, Livio ; Garcia, Davide Astiaso ; Prina, Matteo Giacomo ; Nastasi, Benedetto.
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  3. Enhancing shipboard waste heat management with advanced technologies. (2025). Maka, Robert ; Palombo, Adolfo ; Buonomano, Annamaria ; Barone, Giovanni ; del Papa, Gianluca.
    In: Renewable and Sustainable Energy Reviews.
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  4. The Optimal Arrangement of Boats in a Coastal Maritime Passenger Lines System Using Graph Theory. (2024). Hadi, Ana Peri ; Vukievi, Damir ; Miura, Antonija.
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  5. Shore power for reduction of shipping emission in port: A bibliometric analysis. (2024). Yang, Zaili ; Ge, Ying-En ; Wang, Jinggai ; Li, Huanhuan.
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  6. The role of hydrogen as enabler of industrial port area decarbonization. (2024). Taccani, R ; Sandrin, P ; Bogar, M ; Pivetta, D ; Dallarmi, C.
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  11. Experimental Validation and Numerical Simulation of a Hybrid Sensible-Latent Thermal Energy Storage for Hot Water Provision on Ships. (2022). Brancato, Vincenza ; Palomba, Valeria ; Manzan, Marco ; Vaglieco, Bianca M ; Freni, Angelo ; Frazzica, Andrea ; Pezzi, Amedeo.
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  15. Energy, economic, and environmental impacts of enhanced ventilation strategies on railway coaches to reduce Covid-19 contagion risks. (2022). Giuzio, Giovanni Francesco ; Barone, Giovanni ; Forzano, Cesare ; Buonomano, Annamaria ; Palombo, Adolfo.
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  16. Improving the Efficiency of Maritime Infrastructures through a BIM-Based Building Energy Modelling Approach: A Case Study in Naples, Italy. (2021). Giuzio, Giovanni Francesco ; Barone, Giovanni ; Forzano, Cesare ; Buonomano, Annamaria ; Palombo, Adolfo.
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    RePEc:gam:jeners:v:15:y:2022:i:21:p:8293-:d:964935.

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  12. Decision support methods for sustainable ship energy systems: A state-of-the-art review. (2022). Trivyza, Nikoletta L ; Theotokatos, Gerasimos ; Boulougouris, Evangelos ; Rentizelas, Athanasios.
    In: Energy.
    RePEc:eee:energy:v:239:y:2022:i:pc:s0360544221025366.

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  13. Lifecycle energy solution of the electric propulsion ship with Live-Life cycle assessment for clean maritime economy. (2022). Zhou, Peilin ; Park, Chybyung ; Jeong, Byongug.
    In: Applied Energy.
    RePEc:eee:appene:v:328:y:2022:i:c:s0306261922014313.

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  14. A distributed real-time power management scheme for shipboard zonal multi-microgrid system. (2022). Xie, Peilin ; Bazmohammadi, Najmeh ; Vasquez, Juan C ; Guerrero, Josep M ; Alcala, Jose Matas ; el Mariachet, Jorge ; Tan, Sen.
    In: Applied Energy.
    RePEc:eee:appene:v:317:y:2022:i:c:s0306261922004639.

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  15. On the Possible Introduction of Mini Gas Turbine Cycles Onboard Ships for Heat and Power Generation. (2021). Zunino, Pietro ; Luzzi, Matteo ; Satta, Francesca ; Barsi, Dario.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:3:p:568-:d:485492.

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  16. Energy Savings by Optimization of Thrusters Allocation during Complex Ship Manoeuvres. (2021). Zalewski, Pawe ; Artyszuk, Jarosaw.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:16:p:4959-:d:613701.

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  17. Implementing the dynamic simulation approach for the design and optimization of ships energy systems: Methodology and applicability to modern cruise ships. (2021). Barone, G ; Forzano, C ; Palombo, A ; Buonomano, A.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:150:y:2021:i:c:s1364032121007693.

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  18. Power-to-Ships: Future electricity and hydrogen demands for shipping on the Atlantic coast of Europe in 2050. (2021). Robinius, Martin ; Ortiz, Inmaculada ; Heinrichs, Heidi ; Caglayan, Dilara Gulcin ; Stolten, Detlef ; Ortiz-Imedio, Rafael.
    In: Energy.
    RePEc:eee:energy:v:228:y:2021:i:c:s0360544221009099.

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  19. Exergy-based modeling framework for hybrid and electric ground vehicles. (2021). Onori, Simona ; Pozzato, Gabriele ; Dettu, Federico ; Rizzo, Denise M.
    In: Applied Energy.
    RePEc:eee:appene:v:300:y:2021:i:c:s0306261921007248.

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  20. The impact of sulphur limit fuel regulations on maritime supply chain network design. (2020). Dekker, Rommert ; Mallidis, I ; Iakovou, E ; Vlachos, D ; Despoudi, S.
    In: Annals of Operations Research.
    RePEc:spr:annopr:v:294:y:2020:i:1:d:10.1007_s10479-018-2999-4.

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  21. Quality Control of the Thermal Properties of Superstructures in Accommodation Spaces in Naval Constructions. (2020). Moyano, Juan ; Bermudez, Francisco Javier ; Bienvenido-Huertas, David ; Rodriguez-Jimenez, Carlos E ; Muoz-Rubio, Aurelio.
    In: Sustainability.
    RePEc:gam:jsusta:v:12:y:2020:i:10:p:4194-:d:360700.

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  22. Regression Models for the Evaluation of the Techno-Economic Potential of Organic Rankine Cycle-Based Waste Heat Recovery Systems on Board Ships Using Low Sulfur Fuels. (2020). Larsen, Ulrik ; Mondejar, Maria E ; Haglind, Fredrik ; Baldasso, Enrico.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:6:p:1378-:d:333122.

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  23. Comparison of Saturated and Superheated Steam Plants for Waste-Heat Recovery of Dual-Fuel Marine Engines. (2020). Campora, Ugo ; Zaccone, Raphael ; Altosole, Marco ; Benvenuto, Giovanni.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:4:p:985-:d:323959.

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  24. Green technology adoption for fleet deployment in a shipping network. (2020). Wu, Yiwei ; Wang, Shuaian ; Zhen, LU ; Laporte, Gilbert.
    In: Transportation Research Part B: Methodological.
    RePEc:eee:transb:v:139:y:2020:i:c:p:388-410.

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  25. Cruise ships power plant optimisation and comparative analysis. (2020). Bolbot, Victor ; Trivyza, Nikoletta L ; Theotokatos, Gerasimos ; Boulougouris, Evangelos ; Vassalos, Dracos ; Rentizelas, Athanasios.
    In: Energy.
    RePEc:eee:energy:v:196:y:2020:i:c:s0360544220301687.

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  26. The role of solid oxide fuel cells in future ship energy systems. (2020). Moret, Stefano ; Tammi, Kari ; Marechal, Franois ; Baldi, Francesco.
    In: Energy.
    RePEc:eee:energy:v:194:y:2020:i:c:s036054421932506x.

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  27. Hybrid electric topology for short sea ships with high auxiliary power availability requirement. (2020). Tammi, Kari ; Halme, Jukka ; Huotari, Janne ; Ritari, Antti.
    In: Energy.
    RePEc:eee:energy:v:190:y:2020:i:c:s0360544219320547.

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  28. Intertemporal Static and Dynamic Optimization of Synthesis, Design, and Operation of Integrated Energy Systems of Ships. (2019). Sakalis, George N ; Tzortzis, George J ; Frangopoulos, Christos A.
    In: Energies.
    RePEc:gam:jeners:v:12:y:2019:i:5:p:893-:d:212031.

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  29. Cruise ship emissions in Norwegian waters: A geographical analysis. (2019). Gossling, Stefan ; Simonsen, Morten ; Walnum, Hans Jakob.
    In: Journal of Transport Geography.
    RePEc:eee:jotrge:v:78:y:2019:i:c:p:87-97.

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  30. Natural gas as a ship fuel: Assessment of greenhouse gas and air pollutant reduction potential. (2019). Merida, Walter ; Blomerus, Paul ; Sharafian, Amir.
    In: Energy Policy.
    RePEc:eee:enepol:v:131:y:2019:i:c:p:332-346.

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