Development of Hybrid Propulsion System for Energy Management and Emission Reduction in Maritime Transport System
- 1 Ocean-Going Ship Chief Engineer, Islamic Republic of Iran Shipping Lines (IRISL), Tehran, Iran
- 2 Electronic Engineer, Master of IT, Tehran Branch, Azad University, E-Campus, Tehran, Iran
Abstract
Given the strategic importance of energy and air pollution in the today world and due to the fact that the maritime transport system is one of the main sources of energy consumption and emissions in the environment, particularly contamination of water, so in recent years, fuel consumption and emissions reduction in the maritime transport industry has received considerable attention. Thus, in this paper, a new method is provided for typical boat hybridization, so by adding an electric motor and battery to boat power transmission system, dynamic performance will improve fuel consumption and emissions reduces. For this purpose, power transmission system elements are modelled and boat function is evaluated in real terms of movement by defining energy management strategy between power sources. The simulation results show that boat hybridization considerably reduces fuel consumption and emissions.
- Abdel-Baki, A.S., Dkhil, M.A. and Al-Quraishy, S. (2011) Bioaccumulation of Some Heavy Metals in Tilapia Fish Relevant to Their Concentration in Water And Sediments of Wadi Hanifah, Saudi Arabia. African Journal of Biotechnology, 10, 2451-2541.
- Abdolahpur Monikh, M., Safahieh, A., Savari, A. and Doraghi, A. (2013) Heavy Metal Concentration in Sediment, Benthic, Benthopelagic, and Pelagic Fish Species from Musa Estuary (Persian Gulf). Environmental Monitoring and Assessment, 185, 215–222. http://dx.doi.org/10.1007/s10661-012-2545-9
- Agah, H., Leermakers, M., Marc Elskens, S. and Fatemi, M. (2009) Accumulation of Trace Metals in the Liver and Liver Tissues of Five Species from the Persian Gulf. Environmental Monitoring Assess, 157, 499-514.
- Agah, H.S., Hashtroodi, M. and Baeyens, W. (2011) Trace Metals Analysis in the Sediments of the Southern Caspian Sea. Journal of the Persian Gulf (Marine Science), 2, 1-12.
- Agusa, T., Kunito, T., Tanabe, Sh. and Pourkazemi, M. (2004) Concentrations of Trace Elements in Muscle of Sturgeons in the Caspian Sea. Marine Pollution Bulletin, 49, 789- 800. http://dx.doi.org/10.1016/j.marpolbul.2004.06.008
- Akin, H.K. and Unlu, E. (2007) Heavy Metal Concentrations in Water, Sediment, Fish and Some Benthic Organisms from Tigris River, Turkey. Environmental Monitoring and Assessment, 131, 323-337. http://dx.doi.org/10.1007/s10661-006-9478-0
- Alipour, H. and Pourkhabbaz, A. (2013) Assessing of Heavy Metal Concentration in the Tissues of Rutilus rutilus caspicus and Neogobius gorlap from Miankaleh. Bulletin of Environmental Contamination and Toxicology, 91, 517-521. http://dx.doi.org/10.1007/s00128-013-1105-5
- Allen G.P., Salomon, J.C., Bassoulct, P., Du Penhoat, Y. and De Grandpre, C. (1980) Effects of Tides on Mixing and Suspcndcd Sediment Transport in Macrotidal Estuaries. Sedimentary Geology, 26, 69-90. http://dx.doi.org/10.1016/0037-0738(80)90006-8
- Al-Yousuf, M.H., El-Shahawi, M.S. and Al-Ghais, S.M. (2000) Trace Metals in Liver, Skin and Muscle of Lethrinus lentjan Fish Species in Relation to Body Length and Sex. Science of The Total Environment, 256, 87-94.
- Aly Salem D.M.S, Khaled. A, El Nemr A. and El-Sikaily, A. (2014) Comprehensive Risk Assessment of Heavy Metals in Surface Sediments along the Egyptian Red Sea Coast. Egyptian Journal of Aquatic Research, 40, 349-362. http://dx.doi.org/10.1016/j.ejar.2014.11.004
- Amiard, J., Amiardtriquet, C., Barka, S., Pellerin, J. and Rainbow, P. (2006) Metallothioneins in Aquatic Invertebrates: Their Role in Metal Detoxification and Their Use Asbiomarkers. Aquat.Toxicol.76, 160-202. Nile in Upper Egypt. International Journal of Environmental Science and Engineering (IJESE), 3, 1-10. http://dx.doi.org/10.1016/j.aquatox.2005.08.015