Articles | Volume 14, issue 3
https://doi.org/10.5194/os-14-453-2018
https://doi.org/10.5194/os-14-453-2018
Research article
 | 
11 Jun 2018
Research article |  | 11 Jun 2018

Numerical modeling of surface wave development under the action of wind

Dmitry Chalikov

Related subject area

Depth range: Surface | Approach: Numerical Models | Geographical range: All Geographic Regions | Phenomena: Surface Waves
Imbalance of energy and momentum source terms of the sea wave transfer equation for fully developed seas
G. V. Caudal
Ocean Sci., 8, 1085–1098, https://doi.org/10.5194/os-8-1085-2012,https://doi.org/10.5194/os-8-1085-2012, 2012

Cited articles

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Alves, J. H. G. M. and Banner, M. L.: Performance of a Saturation-Based Dissipation-Rate Source Term in Modeling the Fetch-Limited Evolution of Wind Waves, J. Phys. Oceanogr., 33, 1274–1298, 2003. 
Al'Zanaidi, M. A. and Hui, H. W: Turbulent airflow over water waves-a numerical study, J. Fluid Mech., 148, 225–246, 1984. 
Babanin, A. V., Tsagareli, K. N., Young, I. R., and Walker, D. J.: Numerical Investigation of Spectral Evolution of Wind Waves. Part II: Dissipation Term and Evolution Tests, J. of Phys. Oceanography, 40, 667–683, 2010. 
Babanin, A. V.: Breaking and Dissipation of Ocean Surface Waves, Cambridge University Press, The Edinburgh Building, Cambridge, UK, 480 pp., 2011. 
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Short summary
Waves obtain energy from wind; they grow and increase in size and speed of propagation. The structure of wave fields becomes complicated due to appearance of new wave components. Finally, the sea surface looks like a poorly organized motion consisting of quickly running large hills and hollows covered with smaller waves. This process can be successfully simulated on computers. Such investigations allow us to understand the physics of sea waves, which is important for practice.