140
W. Guo and T. Xu
3. Blumberg, A.F., Mellor, G.L.: A description of a three-dimensional coastal ocean circulation
model. In: Heaps, N. (ed.) Three-Dimensional Coastal Ocean Models, vol. 4, pp. 1–16. AGU,
Washington (1987)
4. Booij, N., Ris, R.C., Holthuijsen, L.H.: A third generation wave model for coastal regions, part
I: model description and validation. J. Geophys. Res. 104(C4), 7649–7666 (1999)
5. Chao, X., Shankar, N.J., Wang, S.S.Y.: Development and application of oil spill model for
Singapore coastal waters. J. Hydraul. Eng. 129, 495–503 (2011)
6. Chen, C., Liu, H., Beardsley, R.C.: An unstructured grid, finite-volume three-dimensional,
primitive equations ocean model: application to coastal ocean and estuaries. J. Atmos. Ocean.
Technol. 20, 159–186 (2003)
7. Frazão Santos, C., Carvalho, R., Andrade, F.: Quantitative assessment of the differential coastal
vulnerability associated to oil spills. J. Coast. Conserv. 17, 25–36 (2013)
8. Guo, W.J., Wang, Y.X.: A numerical oil spill model based on a hybrid method. Mar. Pollut.
Bull. 58, 726–734 (2009)
9. Guo, W., Hao, Y., Zhang, L., Xu, T., Ren, X., Cao, F., Wang, S.: Development and application of
an oil spill model with wavecurrent interactions in coastal areas. Mar. Pollut. Bull. 84, 212–224
(2014)
10. Mariano, A.J., Kourafalou, V.H., Srinivasan, A., Kang, H., Halliwell, G.R., Ryan, E.H., Rofferc,
M.: On the modeling of the 2010 Gulf of Mexico oil spill. Dyn. Atmos. Oceans 52, 322–340
(2011)
11. Marta-Almeida, M., Ruiz-Villarreal, M., Pereira, J., Otero, P., Cirano, M., Zhang, X., Hetland,
R.D.: Efficient tools for marine operational forecast and oil spill tracking. Mar. Pollut. Bull.
71, 139–151 (2013)
12. Mellor, G.L.: The depth-dependent current and wave interaction equations: a revision. J. Phys.
Oceanogr. 38, 2587–2596 (2008)
13. Reed, M., Johansen, Ø., Brandvik, P.J., Daling, P., Lewis, A., Fiocco, R., Mackay, D., Prentki,
R.: Oil spill modeling towards the close of the 20th century: overview of the state of the art.
Spill Sci. Technol. Bull. 5, 3–16 (1999)
14. Shchepetkin, A.F., McWilliams, J.C.: The regional oceanic modeling system (ROMS): a
split-explicit, free-surface, topography-following-coordinate oceanic model. Ocean Model. 9,
347–404 (2005)
15. Stiver, W., Mackay, D.: Evaporation rate of spills of hydrocarbons and petroleum mixtures.
Environ. Sci. Technol. 18, 834–840 (1984)
16. Tkalich, P., Chan, E.S.: Vertical mixing of oil droplets by breaking waves. Mar. Pollut. Bull.
44, 1219–1229 (2003)
17. Zhang, Y., Baptista, A.M., Myers, E.P.: A cross-scale model for 3D baroclinic circulation
in estuary-plume-shelf systems: I. Formulation and skill assessment. Cont. Shelf Res. 24,
2187–2214 (2004)
18. Zhang, Y., Baptista, A.M.: SELFE: a semi-implicit Eulerian-Lagrangian finite-element model
for cross-scale ocean circulation. Ocean Model. 21, 71–96 (2008)
W. Guo and T. Xu
3. Blumberg, A.F., Mellor, G.L.: A description of a three-dimensional coastal ocean circulation
model. In: Heaps, N. (ed.) Three-Dimensional Coastal Ocean Models, vol. 4, pp. 1–16. AGU,
Washington (1987)
4. Booij, N., Ris, R.C., Holthuijsen, L.H.: A third generation wave model for coastal regions, part
I: model description and validation. J. Geophys. Res. 104(C4), 7649–7666 (1999)
5. Chao, X., Shankar, N.J., Wang, S.S.Y.: Development and application of oil spill model for
Singapore coastal waters. J. Hydraul. Eng. 129, 495–503 (2011)
6. Chen, C., Liu, H., Beardsley, R.C.: An unstructured grid, finite-volume three-dimensional,
primitive equations ocean model: application to coastal ocean and estuaries. J. Atmos. Ocean.
Technol. 20, 159–186 (2003)
7. Frazão Santos, C., Carvalho, R., Andrade, F.: Quantitative assessment of the differential coastal
vulnerability associated to oil spills. J. Coast. Conserv. 17, 25–36 (2013)
8. Guo, W.J., Wang, Y.X.: A numerical oil spill model based on a hybrid method. Mar. Pollut.
Bull. 58, 726–734 (2009)
9. Guo, W., Hao, Y., Zhang, L., Xu, T., Ren, X., Cao, F., Wang, S.: Development and application of
an oil spill model with wavecurrent interactions in coastal areas. Mar. Pollut. Bull. 84, 212–224
(2014)
10. Mariano, A.J., Kourafalou, V.H., Srinivasan, A., Kang, H., Halliwell, G.R., Ryan, E.H., Rofferc,
M.: On the modeling of the 2010 Gulf of Mexico oil spill. Dyn. Atmos. Oceans 52, 322–340
(2011)
11. Marta-Almeida, M., Ruiz-Villarreal, M., Pereira, J., Otero, P., Cirano, M., Zhang, X., Hetland,
R.D.: Efficient tools for marine operational forecast and oil spill tracking. Mar. Pollut. Bull.
71, 139–151 (2013)
12. Mellor, G.L.: The depth-dependent current and wave interaction equations: a revision. J. Phys.
Oceanogr. 38, 2587–2596 (2008)
13. Reed, M., Johansen, Ø., Brandvik, P.J., Daling, P., Lewis, A., Fiocco, R., Mackay, D., Prentki,
R.: Oil spill modeling towards the close of the 20th century: overview of the state of the art.
Spill Sci. Technol. Bull. 5, 3–16 (1999)
14. Shchepetkin, A.F., McWilliams, J.C.: The regional oceanic modeling system (ROMS): a
split-explicit, free-surface, topography-following-coordinate oceanic model. Ocean Model. 9,
347–404 (2005)
15. Stiver, W., Mackay, D.: Evaporation rate of spills of hydrocarbons and petroleum mixtures.
Environ. Sci. Technol. 18, 834–840 (1984)
16. Tkalich, P., Chan, E.S.: Vertical mixing of oil droplets by breaking waves. Mar. Pollut. Bull.
44, 1219–1229 (2003)
17. Zhang, Y., Baptista, A.M., Myers, E.P.: A cross-scale model for 3D baroclinic circulation
in estuary-plume-shelf systems: I. Formulation and skill assessment. Cont. Shelf Res. 24,
2187–2214 (2004)
18. Zhang, Y., Baptista, A.M.: SELFE: a semi-implicit Eulerian-Lagrangian finite-element model
for cross-scale ocean circulation. Ocean Model. 21, 71–96 (2008)
