Hydrotechnical Construction

, Volume 7, Issue 9, pp 825–829 | Cite as

Effective forecasting of slush ice phenomena at hydroelectric stations

  • G. E. Avtonomov
  • A. G. Vasilevskii
  • E. G. Popova


Energy Source Power Generation Power Engineer Renewable Energy Source Structural Foundation 
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Literature Cited

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    I. B. Balashova and N. D. Efremova, “Freezing periods of newly created reservoirs,” in: Transactions of the Joint Conference on Hydraulic Engineering [in Russian], No. 42, Énergiya, Moscow (1968).Google Scholar
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    Instructions on the Thermal Calculation of Reservoirs [in Russian], VSN-18-68, Minénergo SSSR.Google Scholar
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    K. Achermann, “Betriebliche Vorkommnisse und Erfahrungen bei Eisgang vom Februar 1956 auf A are und Rhein,” WEW, No. 3 (1959).Google Scholar
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    V. A. Rymsha and R. V. Donchenko, “Method of forecasting the conditions of slush ice formation,” Trudy GGI, No. 93, Gidrometeoizdat, Leningrad (1962).Google Scholar
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    A. N. Chizhov, “The formation of slush ice and its drift on mountain rivers,” Trudy GGI, No. 93, Gidrometeoizdat, Leningrad (1962).Google Scholar
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    V. N. Khovko, “Winter problems in the operation of the Dnepr sequence,” Gidrotekh. Stroitel'., No. 1 (1971).Google Scholar
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    I. E. Alekseenko, “Ice difficulties at the V. I. Lenin Dnepr hydroelectric station,” Gidrotekh, Stroitel'., No. 1 (1971)Google Scholar
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    A. M. Estifeev, “Use of heat balance equations for establishing the critical air temperature causing slush ice formation,” Izvestiya VNIIG, 34 (1957).Google Scholar
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    V. Sh. Germanishvili, “Slush ice on Caucasian rivers and the possibilities of its occurrence,” Trudy TsIP, No. 58, Gidrometeoizdat, Moscow (1957).Google Scholar

Copyright information

© American Society of Civil Engineers 1974

Authors and Affiliations

  • G. E. Avtonomov
  • A. G. Vasilevskii
  • E. G. Popova

There are no affiliations available

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