This manual describes information about the sea ice surface temperature data which were recorded with an thermal infrared camera during 35 helicopter flights in the winter season 2019/2020. The measurements were part of the MOSAiC expedition. The data set contains the single images as well as maps for every flight. This version contains small update after reprocessing the data with an other method
The sea ice surface temperature is important to understand the Arctic winter heat budget. We conduct...
Thermal infrared imaging was performed with a down-looking thermal infrared camera (7.5–14 µm) inst...
Leads (open water and thin ice) were classified in helicopter-borne thermal infrared observations. L...
This manual describes information about the sea ice surface temperature data which were recorded wit...
This data set includes a series of surface temperature images for each of the 35 flights, which were...
This data set includes a series of surface temperature images for each of the 35 flights, which were...
We provide high-resolution surface temperature data for a better understanding of the spatial and te...
We provide high-resolution surface temperature data for a better understanding of the spatial and te...
The surface temperature maps are provided for 35 flights between 02.10.2019 and 23.04.2020 during th...
The surface temperature maps are provided for 35 flights between 02.10.2019 and 23.04.2020 during th...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
The sea ice surface temperature is important to understand the Arctic winter heat budget. We conduct...
Thermal infrared imaging was performed with a down-looking thermal infrared camera (7.5–14 µm) inst...
Leads (open water and thin ice) were classified in helicopter-borne thermal infrared observations. L...
This manual describes information about the sea ice surface temperature data which were recorded wit...
This data set includes a series of surface temperature images for each of the 35 flights, which were...
This data set includes a series of surface temperature images for each of the 35 flights, which were...
We provide high-resolution surface temperature data for a better understanding of the spatial and te...
We provide high-resolution surface temperature data for a better understanding of the spatial and te...
The surface temperature maps are provided for 35 flights between 02.10.2019 and 23.04.2020 during th...
The surface temperature maps are provided for 35 flights between 02.10.2019 and 23.04.2020 during th...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
Surface temperature maps, gridded in 1 m resolution, are provided for 35 flights between 02.10.2019 ...
The sea ice surface temperature is important to understand the Arctic winter heat budget. We conduct...
Thermal infrared imaging was performed with a down-looking thermal infrared camera (7.5–14 µm) inst...
Leads (open water and thin ice) were classified in helicopter-borne thermal infrared observations. L...