A new automated method enabling consistent satellite assessment of seasonal lake ice phenology at 5 km resolution was developed for all lake pixels (water coverage ≥ 90 %) in the Northern Hemisphere using 36.5 GHz H-polarized brightness temperature (Tb) observations from the Advanced Microwave Scanning Radiometer for EOS and Advanced Microwave Scanning Radiometer 2 (AMSR-E/2) sensors. The lake phenology metrics include seasonal timing and duration of annual ice cover. A moving t test (MTT) algorithm allows for automated lake ice retrievals with daily temporal fidelity and 5 km resolution gridding. The resulting ice phenology record shows strong agreement with available ground-based observations from the Global Lake and River Ice Phenology...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
Lake ice is an important component in understanding the local climate as changes in temperature have...
Lake ice is an important component in understanding the local climate as changes in temperature have...
A new automated method enabling consistent satellite assessment of seasonal lake ice phenology at 5 ...
Seasonal ice cover is one of the important attributes of lakes in middle- and high-latitude regions....
Time series of brightness temperatures (<i>T</i><sub>B</sub>) from the Advan...
Lake ice phenology (LIP) is an essential indicator of climate change and helps with understanding of...
Lake ice phenology (LIP) is an essential indicator of climate change and helps with understanding of...
The paper presents a theoretical analysis of seasonal brightness temperature variations at a number...
Lake ice phenology (timing of ice-on and ice-off) and thickness are changing in response to generall...
Remote sensing of ice phenology for small lakes is hindered by a lack of satellite observations with...
Remote sensing of ice phenology for small lakes is hindered by a lack of satellite observations with...
The timing of lake ice breakup and freezeup are important indicators of climate change in Arctic and...
The timing of lake ice breakup and freezeup are important indicators of climate change in Arctic and...
This dataset contains ice phenology for 56 lakes in the Northern Hemisphere from 1979 to 2021. The i...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
Lake ice is an important component in understanding the local climate as changes in temperature have...
Lake ice is an important component in understanding the local climate as changes in temperature have...
A new automated method enabling consistent satellite assessment of seasonal lake ice phenology at 5 ...
Seasonal ice cover is one of the important attributes of lakes in middle- and high-latitude regions....
Time series of brightness temperatures (<i>T</i><sub>B</sub>) from the Advan...
Lake ice phenology (LIP) is an essential indicator of climate change and helps with understanding of...
Lake ice phenology (LIP) is an essential indicator of climate change and helps with understanding of...
The paper presents a theoretical analysis of seasonal brightness temperature variations at a number...
Lake ice phenology (timing of ice-on and ice-off) and thickness are changing in response to generall...
Remote sensing of ice phenology for small lakes is hindered by a lack of satellite observations with...
Remote sensing of ice phenology for small lakes is hindered by a lack of satellite observations with...
The timing of lake ice breakup and freezeup are important indicators of climate change in Arctic and...
The timing of lake ice breakup and freezeup are important indicators of climate change in Arctic and...
This dataset contains ice phenology for 56 lakes in the Northern Hemisphere from 1979 to 2021. The i...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
Lake ice is an important component in understanding the local climate as changes in temperature have...
Lake ice is an important component in understanding the local climate as changes in temperature have...