258
Views
3
CrossRef citations to date
0
Altmetric
Research papers

The effect of Coriolis force on oil slick transport and spreading at sea

, &
Pages 409-422 | Received 02 Mar 2015, Accepted 15 Nov 2016, Published online: 06 Jan 2017

References

  • Deleersnijder, E., & Loffet, A. (1985). Mathematical modelling and remote sensing of the transport and spreading of oil spills on the sea. Proceedings progress in Belgian oceanographic research, Brussels.
  • Fay, J. (1971). Physical processes in the spread of oil on a water surface. Conference on prevention and control of oil spill, Washington, DC, pp. 463–467.
  • Galea, A., Grifoll, M., Roman, F., Mestres, M., Armenio, V., Sanchez-Arcilla, A., & Zammit Mangion, L. (2014). Numerical simulation of water mixing and renewals in the Barcelona Harbour area: The winter season. Environmental Fluid Mechanics, 14(6), 1405–1425. doi: 10.1007/s10652-014-9351-6
  • Guo, W., Hao, Y., Zhang, L., Xu, T., Ren, X., Cao, F., & Wang, S. (2014). Deveopment and application of an oil spill model with wave-current interactions in coastal areas. Marine Pollution Bulletin, 84, 213–224. doi: 10.1016/j.marpolbul.2014.05.009
  • Guo, W. J., & Wang, Y. X. (2009). A numerical oil spill model based on a hybrid method. Marine Pollution Bulletin, 58, 726–734. doi: 10.1016/j.marpolbul.2008.12.015
  • Hoult, D. P. (1972). Oil spreading on the sea. Annual Review of Fluid Mechanics, 4, 341–368. doi: 10.1146/annurev.fl.04.010172.002013
  • Inghilesi, R., Stocca, V., Roman, F., & Armenio, V. (2008). Dispersion of a vertical jet of buoyant particles in a stably stratified wind-driven Ekman layer. International Journal of Heat and Fluid Flow, 29, 733–742. doi: 10.1016/j.ijheatfluidflow.2008.02.004
  • ITOPF. (2012). Handbook. Retrieved from http://www.itopf.com/knowledge-resources/documents-guides/.
  • Lehr, W., Fraga, R., Belen, M., & Cekirge, H. (1984). A new technique to estimate initial spill size using a modified Fay-type spreading formula. Marine Pollution Bulletin, 15, 3–16. doi: 10.1016/0025-326X(84)90488-0
  • Mackay, D., Buist, I., Mascarenhas, R., & Petersen, S. (1980a). Oil spill processes and models. Environmental protection service (Canada Report EE-8).
  • Mackay, D., Paterson, S., & Nadeau, S. (1980b). Calculation of the evaporation rate of volatile liquids. Proceedings of the national conference on control of hazardous material spills, Louisville, KY, pp. 364–368.
  • Maderich, V., Brovchenko, I., & Jung, K. T. (2012). Oil spreading in instantaneous and continuous spills on rotating earth. Environmental Fluid Mechanics, 12, 361–378. doi: 10.1007/s10652-012-9239-2
  • Nihoul, J. C. J. (1984). A non-linear mathematical model for the transport and spreading of oil slicks. Ecological Modelling, 22, 325–339. doi: 10.1016/0304-3800(84)90018-8
  • Petronio, A., Roman, F., Nasello, C., & Armenio, V. (2013). Large eddy simulation model for wind-driven sea circulation in coastal areas. Nonlinear Processes in Geophysics, 20, 1095–1112. doi: 10.5194/npg-20-1095-2013
  • Reed, M., Johansen, O., Brandvik, P. J., Daling, P., Lewis, A., Fiocco, R., … Prentki, R. (1999). Oil spill modeling towards the close of the 20th century: Overview of the state of the art. Spill Science & Technology Bulletin, 5(1), 3–16. doi: 10.1016/S1353-2561(98)00029-2
  • Roman, F., Napoli, E., Milici, B., & Armenio, V. (2009). An improved immersed boundary method for curvilinear grids. Computers & Fluids, 38, 1510–1527. doi: 10.1016/j.compfluid.2008.12.004
  • Roman, F., Stipcich, G., Armenio, V., Inghilesi, R., & Corsini, S. (2010). Large eddy simulation of mixing in coastal areas. International Journal of Heat and Fluid Flow, 31, 327–341. doi: 10.1016/j.ijheatfluidflow.2010.02.006
  • Samuels, W. B., Huang, N. E., & Amstutz, D. E. (1982). An oilspill trajectory analysis model with a variable wind deflection angle. Ocean Engineering, 9(4), 347–360. doi: 10.1016/0029-8018(82)90028-2
  • Smith, J. (1968). Torrey Canyon pollution and marine life, Chapter 8 (pp. 150–162). Cambridge: Cambridge University Press.
  • Tkalich, P. (2006). A CFD solution of oil spill problems. Environmental Modelling and Software, 21, 271–282. doi: 10.1016/j.envsoft.2004.04.024
  • Venkatesh, S., Neralka, V., Jarvic, E., Jessup, R., & De Lorenzis, B. (1981). A numerical model for predicting the movement of oil slicks. Proc. of Conf. Mechanics of Oil Slicks, Paris, pp. 219–233.
  • Wang, S.-D., Shen, Y.-M., Guo, Y.-K ., & Tang, J. (2008). Three-dimensional numerical simulation for transport of oil spills in seas. Ocean Engineering, 35, 503–510. doi: 10.1016/j.oceaneng.2007.12.001
  • Warluzel, A., & Benque, J. P. (1981). Un modéle mathématique de transport et d'étalement d'une nappe d'hydrocarbures. Proc. of Conf. Mechanics of Oil Slicks, Paris, pp. 199–211.
  • Zanier, G., Petronio, A., Roman, F., & Armenio, V. (2014). High resolution oil spill model for harbour and coastal areas. 3rd IAHR Europe congress, book of proceedings, Porto.
  • Zhang, B., Zhang, C., & Ozer, J. (1991). SURF - A simulation model for the behaviour of oil slicks at sea. In J. Ozer (Ed.), Oil Pollution: Environmental risk assessment (OPERA). Proceedings of opera workshop (pp. 61–85). Dalian.
  • Zhu, J. (1992). On the higher-order bounded discretization schemes for finite volume computations of incompressible flows. Computer Methods in Applied Mechanics and Engineering, 98, 345–360. doi: 10.1016/0045-7825(92)90003-3

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.