Articles | Volume 381
https://doi.org/10.5194/piahs-381-65-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
https://doi.org/10.5194/piahs-381-65-2019
© Author(s) 2019. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
Numerical modeling and forecast of channel changes on the river Lena near city Yakutsk
Pavel Golovlyov
CORRESPONDING AUTHOR
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
Ekaterina Kornilova
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
Inna Krylenko
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
Water Problems Institute, Russian Academy of Sciences, Moscow, 119333,
Russia
Vitaly Belikov
Water Problems Institute, Russian Academy of Sciences, Moscow, 119333,
Russia
Aleksandr Zavadskii
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
Eugeniya Fingert
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
Water Problems Institute, Russian Academy of Sciences, Moscow, 119333,
Russia
Natalya Borisova
Water Problems Institute, Russian Academy of Sciences, Moscow, 119333,
Russia
Elizaveta Morozova
Faculty of Geography, Lomonosov Moscow State University, Moscow,
119991, Russia
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Cited articles
Aleksyuk, A. I. and Belikov, V. V.: Simulation of shallow water flow with areas
and bottom discontinuities, Comp. Math. Math.
Phys., 57, 318–339, https://doi.org/10.1134/s0965542517020026, 2017.
Belikov, V. V. and Kochetkov, V. V.: Software Complex STREAM_2D to
Calculate Streams, Bottom Deformation, and Pollutants Transfer in Open
Flows, Software State Registration Certificate no. 612181, Russian Agency
for Intellectual Property, 2014.
Belikov, V. V. and Semenov, A. Yu.: Non-Sibsonian interpolation of arbitrary
system of points in Euclidean space and adaptive isolines generation, Appl.
Numer. Math., 32, 371–387, 2000.
Belikov, V. V., Zaitsev, A. A., and Militeev, A. N.: Mathematical modeling of
complex sections of large rivers channels, Water Resour., 29,
698–705, 2002 (in Russian).
Belikov, V. V., Krylenko, I. N., Alabyan, A. M., Sazonov, A. A., and Glotko, A. V.: Two-dimensional hydrodynamic flood modelling for populated valley areas of Russian rivers, Proc. IAHS, 370, 69–74, https://doi.org/10.5194/piahs-370-69-2015, 2015.
Chalov, R. S., Kirik, O. M., Ilyasov, A. K., and Botavin D. V.: Yakutsk water
junction on the Lena river: problems of channel processes, history, modern
times, prospects, management possibilities, Water Industry of Russia: problems, technologies, managemen, 3, 44–56, 2012 (in Russian).
Chalov, R. S., Zavadsky, A. S., Ruleva, S. N., Kirik, O. M., Prokop'ev, V. P.,
Androsov, I. M., and Sakharov, A. I.: Morphology, deformations, temporary changes
in the channel of the Lena river and their influence on the economic
infrastructure in the Yakutsk region, Geomorphology, 3, 22–35, 2016 (in
Russian).
Horvat, Z, Horvat, M., and Spasojevic, M.: Two dimensional river flow and
sediment transport model, Environ. Fluid Mech., 15, 595–625,
https://doi.org/10.1007/s10652-014-9375-y, 2015.
Kornilova, E. D., Krylenko, I. N., Golovlyov, P. P., Sazonov, A. A., and Nikitsky,
A. N.: Verification of the two-dimensional hydrodynamic model of the Lena
River near Yakutsk according to time-based space imagery data, Modern
problems of remote sensing of the Earth from space, 15, 169–178, https://doi.org/10.21046/2070-7401-2018-15-5-169-178, 2018 (in Russian).
Krylenko, I., Belikov, V., Fingert, E., Golovlyov, P., Glotko, A.,
Zavadskii, A., Samokhin, M., and Borovkov, S.: Analysis of the impact of
hydrotechnical construction on the Amur river near Blagoveshchensk and Heihe
cities using a two-dimensional hydrodynamic model, Water Resour., 45,
112–121, https://doi.org/10.1134/S0097807818050378, 2018.
Sloff, K. and Mosselman, E.: Bifurcation modelling in a meandering gravel-sand
bed river, Earth Surf. Proc. Land., 37, 1556–1566,
https://doi.org/10.1002/esp.3305, 2012.
Zaitsev, A. A. and Chalov, R. S.: Channel processes and regulation of the river
Lena in the area of Yakutsk, Water Resour., 5, 75–81 (in Russian),
1989.
Zaitsev, A. A., Belikov, V. V., and Militeev, A. N.: Using computer modeling for a
large river, Proc. Int. Symp. “Sediment Transfer through the Fluvial
System”, Moscow, 2–6 August 2004, IAHS Publ. 288, ISBN 1-901502-67-8,
386–394, 2004.
Zhang, W., Xu, Y., Wang, Y., and Peng, H.: Modeling Sediment Transport and River
Bed Evolution in River System, Journal of Clean Energy Technologies, 2, 175–179,
2014.
Short summary
Study of hydraulic and channel changes the Lena River near city Yakutsk was done using STREAM_2D two-dimensional hydrodynamic model (author V. Belikov et al.). Channel changes forecast has shown that degradation of the Adamovskaya branch will be continued, which is the most negative impact for the Yakutsk city. However, to the end of the 10-year forecast period the equal distribution between Adamovskaya and Buorylarskaya channels is possible.
Study of hydraulic and channel changes the Lena River near city Yakutsk was done using STREAM_2D...