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Автор Croley, Thomas E.
Автор Assel, Raymond A.
Дата выпуска 1994
dc.description Great Lakes hydrologic research requires the use of continuous‐simulation daily ice cover models over long time periods in the absence of field observations. They must be physically based, rather than statistically based, for use under conditions different than those under which they were derived. But they also must match existing conditions for which data exist. A review discloses that existing ice dynamics models do not meet all of these criteria; a new one that does is based here on a prismatic ice pack heat balance, ice growth and temperature constraints, and thermodynamic flux terms from companion water heat balance and storage equations. The prismatic ice model is a good first step to understanding complex geometries and is supportable through the use of lake‐averaged energy fluxes. The ice model is integrated into an existing lake thermodynamics and one‐dimensional heat storage model, and the resulting combination is calibrated for Laurentian Great Lakes applications. Simulation experiments are used to analyze the model's strengths and limitations and to explore its relevance. Comparisons between model output and existing data allow consideration of the ice climatology of the Great Lakes; the climatology description is extended through use of the new model. Promising potential model extensions include spatial extension, additional parameterizations for wind‐ice movement, snow, and albedo, and inclusions of remotely sensed data.
Формат application.pdf
Копирайт This paper is not subject to U.S. copyright. Published in 1994 by the American Geophysical Union.
Тема HYDROLOGY
Тема Water/energy interactions
Тема Snow and ice
Тема OCEANOGRAPHY: GENERAL
Тема Water masses
Тема OCEANOGRAPHY: PHYSICAL
Тема Ice mechanics and air/sea/ice exchange processes
Название A one‐dimensional ice thermodynamics model for the Laurentian Great Lakes
Тип article
DOI 10.1029/93WR03415
Electronic ISSN 1944-7973
Print ISSN 0043-1397
Журнал Water Resources Research
Том 30
Первая страница 625
Последняя страница 639
Выпуск 3
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