1,833
Views
20
CrossRef citations to date
0
Altmetric
Articles

A novel ship energy efficiency model considering random environmental parameters

, ORCID Icon, , , , , & show all
Pages 215-228 | Received 14 Oct 2017, Accepted 19 Jul 2018, Published online: 19 Nov 2018

References

  • Aldous L, Smith T, Bucknall R, Thompson P. 2015. Uncertainty analysis in ship performance monitoring. Ocean Eng. 110(6):29–38. doi: 10.1016/j.oceaneng.2015.05.043
  • Andersen IMV. 2013. Wind loads on post-panamax container ship. Ocean Eng. 58(2):115–134. doi: 10.1016/j.oceaneng.2012.10.008
  • Banawan AA, Mosleh M, Seddiek IS. 2013. Prediction of the fuel saving and emissions reduction by decreasing speed of a catamaran. J Mar Eng Technol. 12(3):40–48.
  • Barro RDC, Kim J, Lee D. 2010. Real Time Monitoring of Energy Efficiency Operation Indicator on Merchant Ships. J Korean Soc Mar Eng. 33:40–45.
  • Barua DK. 2005. Beaufort wind scale. Encyclopedia of coastal science. Netherlands: Springer; p. 186–186.
  • Bocchetti, D., Lepore, A., Palumbo, B., Vitiello, L. 2015. A statistical approach to ship fuel consumption monitoring. J Ship Res. 59(3). doi:10.5957/JOSR.59.3.150012.
  • Bowslarkin A, Anderson K, Mander S, Traut M, Walsh C. 2015. Shipping charts a high carbon course. Nat Clim Change. 5(4):293–295. doi: 10.1038/nclimate2532
  • Coraddu A, Figari M, Savio S. 2014. Numerical investigation on ship energy efficiency by Monte Carlo simulation. P I Mech Eng M-J Eng. 228(3):220–234.
  • Fan A, Yan X, Yin Q. 2015. [Energy efficiency model of marine main engine]. J Traffic Transp Eng. 15(4):69–76. Chinese.
  • Fan A, Yan X, Yin Q. 2016. A multisource information system for monitoring and improving ship energy efficiency. J Coast Res. 32(5):1235–1245. doi: 10.2112/JCOASTRES-D-15-00234.1
  • Fan A, Yan X, Yin Q. 2017. Modeling and analysis of ship energy efficiency operational indicator based on the Monte Carlo method. Nav Eng J. 129(1):87–98.
  • Fan A, Yan X, Yin Q, Zhang D. 2017. Clustering of the inland waterway navigational environment and its effects on ship energy consumption. P I Mech Eng M-J Eng. 231(1):57–69.
  • Gentle JE. 2006. Random number generation and Monte Carlo methods. New York: Springer Science & Business Media.
  • Holtrop J, Mennen GG. 1982. An approximate power prediction method. Int Shipbuild Prog. 335(29): 166–170. doi: 10.3233/ISP-1982-2933501
  • [IMO] International Maritime Organization. 2009. Guidelines for voluntary use of the ship energy efficiency operational indicator (EEOI). MEPC.1/Circ.684. London: Marine Environment Protection Committee.
  • [IMO] International Maritime Organization. 2011. Report of the Marine Environment Protection Committee on its sixty-second session. London: Marine Environment Protection Committee.
  • [ITTC] International Towing Tank Conference. 2005. Full scale measurements – speed and power trials – analysis of speed/power trial data. Edinburgh: Recommendations of the 24th ITTC.
  • Ji M, Shen L, Shi B. 2015. [Routing optimization for multi-type containerships in a hub-and-spoke network]. J Traffic Transp Eng. 2(5):362–372. Chinese.
  • Kwon YJ. 2008. Speed loss due to added resistance in wind and waves. Nav Archit. 3:14–16.
  • Lackenby H. 1963. The effect of shallow water on ship speed. Shipbuild Mar Eng. 70:446–450.
  • Liu H, Fu M, Jin X, Shang Y, Shindell D, Faluvegi G, Shindell C, He K. 2016. Health and climate impacts of ocean-going vessels in East Asia. Nat Clim Change. 6(11):1037–1041. doi: 10.1038/nclimate3083
  • Meng Q, Du Y, Wang Y. 2016. Shipping log data based container ship fuel efficiency modeling. Transp Res B-Meth. 83:207–229. doi: 10.1016/j.trb.2015.11.007
  • Moreno-Gutiérrez J, Calderay F, Saborido N, Boile M, Valero RR, Durán-Grados V. 2015. Methodologies for estimating shipping emissions and energy consumption: a comparative analysis of current methods. Energy. 86:603–616. doi: 10.1016/j.energy.2015.04.083
  • Osses JRP, Bucknall RWG. 2014. A marine engineering plant model to evaluate the efficiency and CO2 emissions from crude oil carriers. Shipping in Changing Climates: Provisioning the Future Conference; Liverpool.
  • Rakke SG. 2016. Ship emissions calculation from AIS [dissertation]. Trondheim: Norwegian University of Science and Technology.
  • Smith TWP, Jalkanen JP. 2014. Third IMO GHG study 2014. London: IMO; p. 32.
  • Tillig F, Ringsberg JW, Mao W, Ramne B. 2017. A generic energy systems model for efficient ship design and operation. P I Mech Eng M-J Eng. 231(2):649–666.
  • Trodden DG, Murphy AJ, Pazouki K, Sargeant J. 2015. Fuel usage data analysis for efficient shipping operations. Ocean Eng. 110:75–84. doi: 10.1016/j.oceaneng.2015.09.028
  • [UNFCCC] United Nations Framework Convention on Climate Change. 2015. http://www.cop21.gouv.fr/en/.
  • Vrijdag A. 2014. Estimation of uncertainty in ship performance predictions. J Mar Eng Tech. 13(3):45–55. doi: 10.1080/20464177.2014.11658121
  • Wan Z, Zhu M, Chen S, Sperling D. 2016. Pollution: three steps to a green shipping industry. Nature. 530(7590):275.
  • Xing S, Xinping Y, Bing W, Xin S. 2013. Analysis of the operational energy efficiency for inland river ships. Transp Res D-Tr E. 22: 34–39.
  • Yan X, Sun X, Yin Q. 2015. Multiparameter sensitivity analysis of operational energy efficiency for inland river ships based on backpropagation neural network method. Mar Technol Soc J. 49:148–153. doi: 10.4031/MTSJ.49.1.5
  • Yin Q, Zhao G. 2017. [A study on data cleaning for energy efficiency of ships]. J Transp Info Saf. 35(3):68–73. Chinese.
  • Zhao P. 2016. [Study on capacity building of the safety supervision on the central government duty waters]. China Mar. 1: 32–36. Chinese.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.