A model of melt pond evolution on sea ice

A one‐dimensional, thermodynamic, and radiative model of a melt pond on sea ice is presented that explicitly treats the melt pond as an extra phase. A two‐stream radiation model, which allows albedo to be determined from bulk optical properties, and a parameterization of the summertime evolution of...

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Veröffentlicht in:Journal of Geophysical Research. C. Oceans 2004-12, Vol.109 (C12), p.C12007.1-n/a
Hauptverfasser: Taylor, P. D., Feltham, D. L.
Format: Artikel
Sprache:eng
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Zusammenfassung:A one‐dimensional, thermodynamic, and radiative model of a melt pond on sea ice is presented that explicitly treats the melt pond as an extra phase. A two‐stream radiation model, which allows albedo to be determined from bulk optical properties, and a parameterization of the summertime evolution of optical properties, is used. Heat transport within the sea ice is described using an equation describing heat transport in a mushy layer of a binary alloy (salt water). The model is tested by comparison of numerical simulations with SHEBA data and previous modeling. The presence of melt ponds on the sea ice surface is demonstrated to have a significant effect on the heat and mass balance. Sensitivity tests indicate that the maximum melt pond depth is highly sensitive to optical parameters and drainage.
ISSN:0148-0227
2169-9275
2156-2202
2169-9291
DOI:10.1029/2004JC002361