Abdelmalek M, Guedes Soares C (2023) Review of Risk Analysis Studies in the Maritime LNG Sector.Journal of Marine Science and Application, 22(4):693-715.https://doi.org/10.1007/s11804-023-00376-0
Campora U, Coppola T, Micoli L, Mocerino L, Ruggiero V (2023) Techno-Economic Comparison of Dual-fuel Marine Engine Waste Energy Recovery Systems.Journal of Marine Science and Application, 22(4):809-822.https://doi.org/10.1007/s11804-023-00368-0
Ceylan BO (2023) Investigation of Seasonal Effects on Two-Stroke Marine Diesel Engine Performance Parameters and Emissions.Journal of Marine Science and Application, 22(4):795-808.https://doi.org/10.1007/s11804-023-00383-1
Christopher Selvam D, Yuvarajan D, Jayaba R (2023) The Potential of Inedible Biodiesel as an Eco-Friendly and Sustainable Alternative Fuel for Marine Diesel Engines in India.Journal of Marine Science and Application, 22(4):870-881.https://doi.org/10.1007/s11804-023-00382-2
Gopinath S, Vijayakumar R (2023) Computational Analysis of the Effect of Hull Vane on Hydrodynamic Performance of a Medium-Speed Vessel.Journal of Marine Science and Application, 22(4):762-774.https://doi.org/10.1007/s11804-023-00378-y
Jiang YC, Wang CS, Li JG, Wang CX, Wang Q (2023) Study on Flow-induced Vibration Characteristics of 2-DOF Hydrofoil Based on Fluid-Structure Coupling Method.Journal of Marine Science and Application, 22(4):795-794.https://doi.org/10.1007/ss11804-023-00380-4
Kanbero?lu B, Turan E, K?kkülünk G (2023) Decarbonization of Maritime Transportation:A Case Study for Turkish Ship Fleet.Journal of Marine Science and Application, 22(4):716-727.https://doi.org/10.1007/s11804-023-00370-6
Karatu? ?, Ejder E, Tadros M, Arslano?lu Y (2023) Environmental and Economic Evaluation of Dual-Fuel Engine Investment of a Container Ship.Journal of Marine Science and Application, 22(4):823-836.https://doi.org/10.1007/s11804-023-00381-3
Li WH, Xuan TM, He ZX, Wang Q, Li WM (2023) Combustion Characteristics of Diesel/Butanol Blends Within a Constant Volume Combustion Chamber.Journal of Marine Science and Application, 22(4):850-860.https://doi.org/10.1007/s11804-023-00348-4
Liu SK, Beh KH, Papanikolaou A (2023) Predicting the Fuel Consumption of a Ship in Seaway Considering the Dynamic Interaction Among Environment-Hull-Propeller-Engine.Journal of Marine Science and Application, 22(4):728-740.https://doi.org/10.1007/s11804-023-00373-3
Qu JB, Feng YM, Wu YJ, Zhu YQ, Wu BY, Xiao ZX (2023) Design and optimization of an integrated power system of solid oxide fuel cell and marine low-speed dual fuel engine.Journal of Marine Science and Application, 22(4):837-849.https://doi.org/10.1007/s11804-023-00377-z
Ramsay W, Fridell E, Michan M (2023) Maritime Energy Transition:Future Fuels and Future Emissions.Journal of Marine Science and Application, 22(4):681-692.https://doi.org/10.1007/s11804-023-00369-z
Saini M, Patel BL, Kumar A (2023) Stochastic Modelling and Performance Optimization of Marine Power Plant with Metaheuristic Algorithms.Journal of Marine Science and Application, 22(4):751-761.https://doi.org/10.1007/s11804-023-00371-5
Tadros M, Ventura M, Guedes Soares C (2023a) Review of the IMO Initiatives for Ship Energy Efficiency and Their Implications.Journal of Marine Science and Application, 22(4):662-680.https://doi.org/10.1007/s11804-023-00374-2
Tadros M, Ventura M, Guedes Soares C (2023b) Fuel Consumption Analysis of Single and Twin-Screw Propulsion Systems of a Bulk Carrier.Journal of Marine Science and Application, 22(4):741-750.https://doi.org/10.1007/s11804-023-00372-4
Wei CF, Jiang GH, Cui L, Wu G, Zhong SS (2023) Combustion Analysis of Marine Low-Speed Engine Fueled with Biofuel.Journal of Marine Science and Application, 22(4):861-869.https://doi.org/10.1007/s11804-023-00375-1