Wind Wave Dynamic’s Analysis Based on 3D Wave Hydrodynamics and SWAN Models Using Remote Sensing Data
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-37978-9_39
Reference10 articles.
1. Gorokhovski M, Zamansky R (2018) Modeling the effects of small turbulent scales on the drag force for particles below and above the Kolmogorov scale. Phys Rev Fluids 3:034602
2. Guedes RMC, Bryan KR, Coco G (2013) Observations of wave energy fluxes and swash motions on a low-sloping, dissipative beach. J Geophys Res: Oceans 118:3651–3669
3. Inch K, Davidson M, Masselink G, Russell P (2017) Observations of nearshore infragravity wave dynamics under high energy swell and wind-wave conditions. Cont Shelf Res 138:19–31
4. Protsenko S, Sukhinova T (2017) Mathematical modeling of wave processes and transport of bottom materials in coastal water areas taking into account coastal structures. In: MATEC web of conferences, vol 132. pp 04002
5. Lerma AN, Pedreros R, Robinet A, Senechal N (2017) Simulating wave setup and runup during storm conditions on a complex barred beach. Coast Eng 123:29–41
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