This dataset includes melt pond fraction (MPF) over Arctic sea ice during 2000-2019. The spatial coverage of this data is north of 60 °N. The MPF data is projected on a polar stereographic grid with a spatial resolution of 12.5 km and a temporal resolution of 8-day intervals from May 9 to September 6, which is archived in the NetCDF format. This dataset was jointly developed by the Beijing Normal University, University at Albany-State University of New York, and Sun Yat-sen University. Large-scale temporal and spatial distribution of melt ponds over Arctic sea ice have implications for surface albedo, heat and mass balance of sea ice, freshwater in the upper ocean, and primary productivity of ice algae and phytoplankton. We retrieved the MP...
The NENU-MPF dataset is a spatiotemporally continuous melt pond fraction (MPF) dataset of Arctic sea...
Abstract Melt ponds occupy a large fraction of the Arctic sea ice surface during spring and summer. ...
The Arctic sea ice cover has decreased strongly in extent, thickness, volume and age in recent decad...
The melt pond fraction (MPF) is an important geophysical parameter of climate and the surface energy...
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Abstract. Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arcti...
Melt ponds are influencing the Arctic energy budget as they strongly reduce the surface albedo of se...
The spatial and temporal dynamics of melt ponds and sea ice albedo contain information on the curren...
During summer, melt ponds have a significant influence on Arctic sea-ice albedo. The melt pond fract...
Reflectances measured in the visible frequency range at three channels of the Moderate Resolution Im...
Melt pond coverage of sea ice in the High Arctic was observed for a period of 28 days: from 24 June ...
Melt ponds on Arctic sea ice are of great significance in the study of the heat balance in the ocean...
Melt pond coverage on sea ice is an important influence on sea ice albedo reduction during the summe...
The NENU-MPF dataset is a spatiotemporally continuous melt pond fraction (MPF) dataset of Arctic sea...
Abstract Melt ponds occupy a large fraction of the Arctic sea ice surface during spring and summer. ...
The Arctic sea ice cover has decreased strongly in extent, thickness, volume and age in recent decad...
The melt pond fraction (MPF) is an important geophysical parameter of climate and the surface energy...
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arctic sea ice....
Abstract. Melt ponds on sea ice strongly reduce the surface albedo and accelerate the decay of Arcti...
Melt ponds are influencing the Arctic energy budget as they strongly reduce the surface albedo of se...
The spatial and temporal dynamics of melt ponds and sea ice albedo contain information on the curren...
During summer, melt ponds have a significant influence on Arctic sea-ice albedo. The melt pond fract...
Reflectances measured in the visible frequency range at three channels of the Moderate Resolution Im...
Melt pond coverage of sea ice in the High Arctic was observed for a period of 28 days: from 24 June ...
Melt ponds on Arctic sea ice are of great significance in the study of the heat balance in the ocean...
Melt pond coverage on sea ice is an important influence on sea ice albedo reduction during the summe...
The NENU-MPF dataset is a spatiotemporally continuous melt pond fraction (MPF) dataset of Arctic sea...
Abstract Melt ponds occupy a large fraction of the Arctic sea ice surface during spring and summer. ...
The Arctic sea ice cover has decreased strongly in extent, thickness, volume and age in recent decad...