A numerical model of density currents in estuaries of the Siberian rivers
Sibirskij žurnal vyčislitelʹnoj matematiki, Tome 17 (2014) no. 3, pp. 305-313.

Voir la notice de l'article provenant de la source Math-Net.Ru

A numerical model for studying the dynamic mixing of the sea and the river waters in the estuarial area is proposed. Computations are based on the two-dimensional longitudinal vertical stratified fluid mechanics equations and the equation of transport of salt. The model focuses on the reproduction of the local density currents at the mouth of arms branched deltas of the rivers of Siberia. The results of numerical experiments are given, the dynamic structure of the flow and salinity profiles are compared to the observational data.
@article{SJVM_2014_17_3_a6,
     author = {V. A. Shlychkov and A. I. Krylova},
     title = {A numerical model of density currents in estuaries of the {Siberian} rivers},
     journal = {Sibirskij \v{z}urnal vy\v{c}islitelʹnoj matematiki},
     pages = {305--313},
     publisher = {mathdoc},
     volume = {17},
     number = {3},
     year = {2014},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/SJVM_2014_17_3_a6/}
}
TY  - JOUR
AU  - V. A. Shlychkov
AU  - A. I. Krylova
TI  - A numerical model of density currents in estuaries of the Siberian rivers
JO  - Sibirskij žurnal vyčislitelʹnoj matematiki
PY  - 2014
SP  - 305
EP  - 313
VL  - 17
IS  - 3
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/SJVM_2014_17_3_a6/
LA  - ru
ID  - SJVM_2014_17_3_a6
ER  - 
%0 Journal Article
%A V. A. Shlychkov
%A A. I. Krylova
%T A numerical model of density currents in estuaries of the Siberian rivers
%J Sibirskij žurnal vyčislitelʹnoj matematiki
%D 2014
%P 305-313
%V 17
%N 3
%I mathdoc
%U http://geodesic.mathdoc.fr/item/SJVM_2014_17_3_a6/
%G ru
%F SJVM_2014_17_3_a6
V. A. Shlychkov; A. I. Krylova. A numerical model of density currents in estuaries of the Siberian rivers. Sibirskij žurnal vyčislitelʹnoj matematiki, Tome 17 (2014) no. 3, pp. 305-313. http://geodesic.mathdoc.fr/item/SJVM_2014_17_3_a6/

[1] Samolyubov B. I., Plotnostnye techeniya i diffuziya primesei, Izd-vo LKI, M., 2007

[2] Ivanov V. V., Svyatskii A. Z., “Chislennoe modelirovanie vtorzheniya morskikh vod v ustya rek v sezonnom vremennom masshtabe”, Vodnye resursy, 1987, no. 5, 46–51

[3] Vasiliev O. F., Dumnov S. V., “A two-dimensional model for salt water intrusion in a estuary”, Proc. of the XX IAHR Congress, v. 2, Moscow, USSR, 1983, 10–16

[4] Doronin Yu. P., “Modelirovanie vertikalnoi struktury ustevoi oblasti reki s morskim galoklinom”, Meteorologiya i gidrologiya, 1992, no. 8, 76–83

[5] Kh. Kassens, A. P. Lisitsyn, I. Tide, E. I. Polyakova, L. A. Timokhov, I. E. Frolov (otv. red-ry), Sistema morya Laptevykh i prilegayuschikh morei Arktiki. Sovremennoe sostoyanie i istoriya razvitiya, Izd-vo MGU, M., 2009

[6] Ovchinnikova T. E., Bocharov O. B., “O vliyanii mineralizovannykh teplykh vod pritoka na razvitie vesenne-letnei konvektsii v glubokom ozere”, Vychislitelnye tekhnologii, 11:1 (2006), 71–80

[7] Marchuk G. I., Kochergin V. P., Sarkisyan A. S. i dr., Matematicheskie modeli tsirkulyatsii v okeane, Nauka, Sibirskoe otd-nie, Novosibirsk, 1980 | MR

[8] Vasilev O. F., Voevodin A. F., Nikiforovskaya V. S., “Chislennoe modelirovanie stratifitsirovannykh techenii v sistemakh otkrytykh rusel i vodoemakh razvetvlennoi formy”, Vychislitelnye tekhnologii, 9:2 (2004), 26–41 | Zbl

[9] Chen C. T., Millero F. J., “Precise thermodynamic properties for natural waters covering only the limnological range”, Limnol. Oceanogr., 31:3 (1986), 657–662 | DOI

[10] Molchanov V. N., “Chislennaya model tsirkulyatsii vod na ustevom vzmore s uchetom effektov zhidkogo, teplovogo i ionnogo stokov”, Tr. Arkticheskogo i Antarkticheskogo nauchno-issledovatelskogo instituta, 314, 1976, 36–43

[11] Bocharov O. B., Vasilev O. F., Ovchinnikova T. E., “Dvumernaya vertikalnaya model gidrotermicheskikh protsessov v temperaturno-stratifitsirovannom vodoeme vytyanutoi formy”, Dokl. RAN, 339:3 (1994), 327–330 | MR | Zbl

[12] Rodi V., “Modeli turbulentnosti okruzhayuschei sredy”, Metody rascheta turbulentnykh techenii, ed. V. Kolman, Mir, M., 1984, 227–322

[13] Shlychkov V. A., “Chislennaya model dlya uravnenii melkoi vody na krivolineinoi setke s sokhraneniem integrala Bernulli”, Zhurn. vychisl. matem. i mat. fiziki, 52:7 (2012), 1317–1324 | Zbl

[14] Kassens H., Russian-German Cooperation in the Siberian Shelf Seas: Geo-System Laptev Sea, Alfred-Wegener-Institut fur Polar und Meeresforschung, Bremerhaven, 1994

[15] Simonov A. I., Gidrologiya i gidrokhimiya vod ustevogo vzmorya v moryakh bez prilivov, Gidrometeoizdat, M., 1969