ESTONIAN ACADEMY
PUBLISHERS
eesti teaduste
akadeemia kirjastus
PUBLISHED
SINCE 1952
 
Earth Science cover
Estonian Journal of Earth Sciences
ISSN 1736-7557 (Electronic)
ISSN 1736-4728 (Print)
Impact Factor (2022): 1.1
Interannual variability of ice and snow cover of a small shallow lake; pp. 26–32
PDF | doi: 10.3176/earth.2013.03

Authors
Roman Zdorovennov, Nikolay Palshin, Galina Zdorovennova, Tatiana Efremova, Arkady Terzhevik
Abstract

The interannual variability of ice and snow of small shallow Lake Vendyurskoe (Karelia, Russia) is investigated on the basis of long-term records (1994–2011). The water temperature, thickness of the snow and ice, as well as incident, reflected and penetrating through the ice fluxes of solar radiation were registered. The lake surface albedo in spring varied widely from 0.95 (fresh snow, sunny weather) to 0.1 (water on the ice surface). The heat balance of the lake surface (solar and effective long-wave radiation, evaporation and condensation, turbulent heat transfer) was estimated for the period of melting. The amount of heat accumulated in the sub-ice layer during the spring convection was assessed. Estimates of the proportion of solar radiation on the melting of ice and water heating in the under-ice layer during the spring thaw were carried out.

References

Arst, H. 2003. Optical Properties and Remote Sensing of Multicomponental Water Bodies. Springer, 231 pp.

Bolsenga, S. J. 1977. Preliminary observations on the daily variation of the albedo. Journal of Glaciology, 18, 517–521.

Bolsenga, S. J. 1981. Radiation transmittance through lake ice in the 400–700 nm range. Journal of Glaciology, 27, 57–66.

Efremova, T. & Pal¢shin, N. 2011. Ice phenomena terms on the water bodies of Northwestern Russia. Russian Meteorology and Hydrology, 36, 559–565.
http://dx.doi.org/10.3103/S1068373911080085

Ivanov, G. S. (ed.). 1975. Okeanograficheskie tablitsy [Oceanographic Tables]. Gidrometeoizdat, Leningrad, 477 pp. [in Russian].

Jakkila, J., Leppäranta, M., Kawamura, T., Shirasawa, K. & Salonen, K. 2009. Radiation transfer and heat budget during the ice season in Lake Pääjärvi, Finland. Aquatic Ecology, 43, 681–692.
http://dx.doi.org/10.1007/s10452-009-9275-2

Kuzmin, P. 1961. Protsess tayaniya snega [The Process of Melting Snow]. Gidrometeoizdat, Leningrad, 456 pp. [in Russian].

Lei, R., Leppäranta, M., Erm, A., Jaatinen, E. & Pärn, O. 2011. Field investigations of apparent optical properties of ice cover in Finnish and Estonian lakes in winter 2009. Estonian Journal of Earth Sciences, 60, 50–64.
http://dx.doi.org/10.3176/earth.2011.1.05

Leppäranta, M. 2003. Investigation of ice and water properties and under-ice light fields in fresh and brackish water bodies. Nordic Hydrology, 34, 245–266.

Leppäranta, M. & Kosloff, P. 2000. The structure and thickness of Lake Pääjärvi ice. Geophysica, 36, 233–248.

Leppäranta, M., Terzhevik, A. & Shirasawa, K. 2010. Solar radiation and ice melting in Lake Vendyurskoe, Russian Karelia. Hydrology Research, 41, 50–62.
http://dx.doi.org/10.2166/nh.2010.122

Malm, J., Terzhevik, A., Bengtsson, L., Boyarinov, P., Glinsky, A., Palshin, N. & Petrov, M. 1997. Temperature and salt content regimes in three shallow ice-covered lakes: 1. Temperature, salt content, and density structure. Nordic Hydrology, 28, 99–128.

Odrova, T. V. 1979. Gidrofizika vodoemov sushi [Hydrophysics of Land Reservoirs]. Gidrometeoizdat, Leningrad, 311 pp. [in Russian].

Petrov, M., Terzhevik, A., Palshin, N., Zdorovennov, R. & Zdorovennova, G. 2005. Absorption of solar radiation by snow-and-ice cover of lakes. Water Resources, 32, 496–504.
http://dx.doi.org/10.1007/s11268-005-0063-7

Piotrovich, V. 1958. Obrazovanie i staivanie l¢da na ozerakh-vodokhranilishchakh i rashchet srokov ledostava i ochishcheniya [Formation and Melting of Ice on Lakes, Reservoirs, and the Calculation Time of Purification and Freeze-up Ice]. Gidrometeoizdat, Moscow, 192 pp. [in Russian].

Piotrovich, V. 1968. Rashchety tolshchiny ledianogo pokrova na vodokhranilishche po meteorologicheskim dannym [Calculation the Thickness of Ice Cover on the Reservoirs Using Meteorological Elements]. HMC works, 18, Gidrometeoizdat, Leningrad, 136 pp. [in Russian].

Terzhevik, A., Pal¢shin, N., Golosov, S., Zdorovennov, R., Zdorovennova, G., Mitrokhov, A., Potakhin, M., Shipunova, E. & Zverev, I. 2010. Hydrophysical aspects of oxygen regime formation in a shallow ice-covered lake. Water Resources, 37, 662–673.
http://dx.doi.org/10.1134/S0097807810050064

Back to Issue