An environmental and economic analysis of methanol fuel for a cellular container ship NR Ammar Transportation Research Part D: Transport and Environment 69, 66-76, 2019 | 114 | 2019 |
Eco-environmental analysis of ship emission control methods: Case study RO-RO cargo vessel NR Ammar, IS Seddiek Ocean Engineering 137, 166-173, 2017 | 114 | 2017 |
A comparison between fuel cells and other alternatives for marine electric power generation YMA Welaya, MM El Gohary, NR Ammar International Journal of Naval Architecture and Ocean Engineering 3 (2), 141-149, 2011 | 102 | 2011 |
Thermodynamic analysis of a combined gas turbine power plant with a solid oxide fuel cell for marine applications YMA Welaya, M Mosleh, NR Ammar International Journal of Naval Architecture and Ocean Engineering 5 (4), 529-545, 2013 | 65 | 2013 |
Steam and partial oxidation reforming options for hydrogen production from fossil fuels for PEM fuel cells YMA Welaya, MM El Gohary, NR Ammar Alexandria Engineering Journal 51 (2), 69-75, 2012 | 62 | 2012 |
Energy-and cost-efficiency analysis of greenhouse gas emission reduction using slow steaming of ships: case study RO-RO cargo vessel NR Ammar Ships and Offshore Structures 13 (8), 868-876, 2018 | 52 | 2018 |
Harnessing wind energy on merchant ships: case study Flettner rotors onboard bulk carriers IS Seddiek, NR Ammar Environmental Science and Pollution Research 28, 32695-32707, 2021 | 43 | 2021 |
The hydrogen-fuelled internal combustion engines for marine applications with a case study IS Seddiek, MM Elgohary, NR Ammar Brodogradnja: Teorija i praksa brodogradnje i pomorske tehnike 66 (1), 23-38, 2015 | 41 | 2015 |
Environmental and cost-effectiveness comparison of dual fuel propulsion options for emissions reduction onboard LNG carriers NR Ammar Brodogradnja: Teorija i praksa brodogradnje i pomorske tehnike 70 (3), 61-77, 2019 | 39 | 2019 |
Evaluation of the environmental and economic impacts of electric propulsion systems onboard ships: case study passenger vessel NR Ammar, IS Seddiek Environmental Science and Pollution Research 28, 37851-37866, 2021 | 36 | 2021 |
An environmental and economic analysis of emission reduction strategies for container ships with emphasis on the improved energy efficiency indexes NR Ammar, IS Seddiek Environmental Science and Pollution Research 27, 23342-23355, 2020 | 33 | 2020 |
Performance analysis of supercritical ORC utilizing marine diesel engine waste heat recovery AG Mohammed, M Mosleh, WM El-Maghlany, NR Ammar Alexandria Engineering Journal 59 (2), 893-904, 2020 | 30 | 2020 |
Enhancing energy efficiency for new generations of containerized shipping NR Ammar, IS Seddiek Ocean Engineering 215, 107887, 2020 | 28 | 2020 |
Thermodynamic, environmental and economic analysis of absorption air conditioning unit for emissions reduction onboard passenger ships NR Ammar, IS Seddiek Transportation Research Part D: Transport and Environment 62, 726-738, 2018 | 27 | 2018 |
Energy analysis of a combined solid oxide fuel cell with a steam turbine power plant for marine applications YMA Welaya, M Mosleh, NR Ammar Journal of Marine Science and Application 12, 473-483, 2013 | 23 | 2013 |
Technical and eco-environmental analysis of blue/green ammonia-fueled RO/RO ships IS Seddiek, NR Ammar Transportation Research Part D: Transport and Environment 114, 103547, 2023 | 20 | 2023 |
Wind assisted propulsion system onboard ships: Case study Flettner rotors NR Ammar, IS Seddiek Ships and offshore structures 17 (7), 1616-1627, 2022 | 19 | 2022 |
CFD modeling of syngas combustion and emissions for marine gas turbine applications NR Ammar, AI Farag Polish Maritime Research 23 (3), 39-49, 2016 | 19 | 2016 |
Thermodynamic analysis of a combined solid oxide fuel cell with a steam turbine power plant for marine applications Y Welaya, M Mosleh, NR Ammar Brodogradnja: An International Journal of Naval Architecture and Ocean …, 2014 | 16 | 2014 |
Prediction of shallow water resistance for a new ship model using CFD simulation: case study container barge NR Ammar, MM Elgohary, A Zeid, AG Elkafas Journal of Ship Production and Design 35 (02), 198-206, 2019 | 15 | 2019 |