Numerical simulation of storm waves near the northeastern coast of the Black Sea

Stanislav Myslenkov1, А. А. Шестакова2, П. А. Торопов2
1Lomonosov Moscow State University, GSP-1, Leninskie Gory, Moscow, 119991, Russia
2Lomonosov Moscow State University, GSP-1, Leninskie Gory, Moscow, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Z. K. Abuzyarov, I. O. Dumanskaya, and E. S. Nesterov, Operational Oceanographic Services, Ed. by E. S. Nesterov (Moscow, 2009) [in Russian].

A. V. Bukhanovskii, L. I. Lopatukhin, E. S. Chernyshova, and A. M. Kolesov, “The Storm on the Black Sea on November 11 and the Statistics of Extreme Sea Storms,” Izv. RGO, No. 2, 141 (2009) [in Russian].

A. A. Zelen’ko, B. S. Strukov, Yu. D. Resnyanskii, and S. L. Martynov, “The System of Wind Wave Forecasting in the World Ocean and Russian Seas,” Trudy GOIN, No. 215 (2014) [in Russian].

D. V. Ivonin, S. A. Myslenkov, P. V. Chernyshov, et al., “The Syslem of Monltoring of Wind Waves in the Coastal Area of the Black Sea Using Radars, Direct Measurements, and Modeling: The First Results,” Problemy Regional’noi Ekologii, No. 4 (2013) [in Russian].

I. M. Kabatchenko and M. V. Reznikov, “Sea Wind Wave Modeling: Methods and Aspects of Applications,” Trudy GOIN, No. 213 (2011) [in Russian].

L. I. Lopatukhin, A. V. Bukhanovskii, S. V. Ivanov, and E. S. Chernyshova, Reference Data on Wind and Waves in the Baltic, North, Black, Azov, and Mediterranean Seas (Russian Marltime Reglster of Shipping, St. Petersburg, 2006) [in Russian].

S. A. Myslenkov and V. S. Arkhipkin, “The Wind Wave Analysis in the Tsemes Bay of the Black Sea Using the SWAN Model,” Trudy Gidromettsentra Rossii, No. 350 (2013) [in Russian].

S. A. Myslenkov and V. S. Arkhipkin, “The System of Regional Forecasting of Wind Waves in the Tsemes Bay of the Black Sea,” Trudy GOIN, No. 215 (2014) [in Russian].

The Regime, Diagnosis, and Forecasting of Wind Waves in Oceans and Seas: Scientific-methodical Manual, Federal Service for Hydrometeorology and Environmenfal Moniforing, Ed. by E. S. Nesterov (Issled. Gruppa “Sotsial’nye Nauki,” Moscow, 2013) [in Russian].

P. A. Toropov, S. A. Myslenkov, and T. E. Samsonov, “Numerical Simulation of Novorossiysk Bora and Related Hazardous Wind Waves,” Vestnik Moskovskogo Un-ta, Ser. 5, Geografiya, No. 2 (2013) [in Russian].

P. A. Toropov and A. A. Shestakova, “Quality Assessment of Novorossiysk Bora Simulation by the WRF-ARW Model,” Meteorol. Gidrol., No. 7 (2014) [Russ. Meteorol. Hydrol., No. 7, 39 (2014)].

A. Akpinar, G. Vledder, M. Komurcu, and M. Ozger, “Evaluation of the Numerical Wave Model (SWAN) for Wave Simulation in the Black Sea,” Continental Shelf Res., 50–51 (2012).

V. S. Arkhipkin, F. N. Gippius, K. P. Koltermann, and G. V. Surkova, “Wind waves in the Black Sea: Results of a Hindcast Study,” Nat. Hazards Earth Syst. Sci. Discuss., 14 (2014).

CISL Research Data Archive, http://rda.ucar.edu.

J. C. Dietrich, S. Tanaka, J. J. Westerink, et al., “Performance of the Unstruciured-mesh, SWAN+ADCIRC Model in Computing Hurricane Waves and Surge,” J. Sci. Computing, No. 2, 52 (2012).

Y. Gusdal, A. Carrasco, B. R. Furevik, and O. Saetra, Validation of the Operational Wave Model WAM and SWAN-2009, Report No. 18 (Oceanography, Oslo, 2010).

E. Rusu, “Strategies in Using Numerical Wave Models in Ocean/Coastal Applications,” J. Mar. Sci. Technol., 19 (2011).

E. Rusu, L. Rusu, and C. Guedes Soares, Prediction of Extreme Wave Conditions in the Black Sea with Numerical Models, JCOMM Tech. Report No. 34, WMO-TD, No. 1368 (2006).

SWAN Technical Documentation, SWAN Cycle III Version 40.51A (Univ. Technol., Delft, Netheriands, 2007), No.98.

WRF-ARW Model, http://www.wrf-model.org/index.php.