model weights: DL model weights for SWE prediction for SNOTEL stations over the Western US. prediction: DL model predictions for SNOTEL SWE observations. [model]_clean_lats: SWE estimation over the Rocky Mountains with models trained on SNOTEL stations. [model]_hist_clean_lats: Historical SWE estimation over the Rocky Mountains with models trained on SNOTEL stations. [model]_relative_clean_lats: SWE fraction estimation over the Rocky Mountains with models trained on SNOTEL SWE fractions. code_SWE_main: necessary code for SWE modeling. corresponding code repository: https://github.com/ShihengDuan/code-SW
The data comprises daily snow water equivalent (SWE) retrievals from Sentinel-1 at 1-km spatial reso...
More recently, snow accumulation and snowmelt models for their calculations are forced to apply data...
The simulation of snow water equivalent (SWE) remains difficult for regional climate models. Accurat...
model weights: DL model weights for SWE prediction for SNOTEL stations over the Western US. predic...
These data describes changes in western US snow water equivalent (SWE) over the 1982–2017 water year...
Due to a continual increase in the demand for water as well as an ongoing regional drought, there is...
The spatial characteristics and patterns of snow accumulation and ablation inform the amount of wate...
ABSRACT: Accurate spatial measurement of SWE in mountain watersheds is perhaps the most significant ...
Snow water equivalent (SWE) estimates at the end of the winter season have been compared for the 200...
Time series of daily Snow Water Equivalent (SWE) and Snow Density over the Northern Hemisphere, base...
Reliable historical manual measurements of snow depths are available for many years, sometimes decad...
Snow measurements physically taken from the northeastern United States are used to produce a Snow Wa...
Supplementary model output to Kraaijenbrink et al. (2021). File descriptions snow_elasticity....
This data set includes daily snow water equivalent (SWE) observations for the historical record to S...
CMIP5 climate models: CESM-CAM5 (CESM), CNRM-CM5 (CNRM), EC-EARTH (EC), HadGEM2-ES (HadGEM), MIROC5,...
The data comprises daily snow water equivalent (SWE) retrievals from Sentinel-1 at 1-km spatial reso...
More recently, snow accumulation and snowmelt models for their calculations are forced to apply data...
The simulation of snow water equivalent (SWE) remains difficult for regional climate models. Accurat...
model weights: DL model weights for SWE prediction for SNOTEL stations over the Western US. predic...
These data describes changes in western US snow water equivalent (SWE) over the 1982–2017 water year...
Due to a continual increase in the demand for water as well as an ongoing regional drought, there is...
The spatial characteristics and patterns of snow accumulation and ablation inform the amount of wate...
ABSRACT: Accurate spatial measurement of SWE in mountain watersheds is perhaps the most significant ...
Snow water equivalent (SWE) estimates at the end of the winter season have been compared for the 200...
Time series of daily Snow Water Equivalent (SWE) and Snow Density over the Northern Hemisphere, base...
Reliable historical manual measurements of snow depths are available for many years, sometimes decad...
Snow measurements physically taken from the northeastern United States are used to produce a Snow Wa...
Supplementary model output to Kraaijenbrink et al. (2021). File descriptions snow_elasticity....
This data set includes daily snow water equivalent (SWE) observations for the historical record to S...
CMIP5 climate models: CESM-CAM5 (CESM), CNRM-CM5 (CNRM), EC-EARTH (EC), HadGEM2-ES (HadGEM), MIROC5,...
The data comprises daily snow water equivalent (SWE) retrievals from Sentinel-1 at 1-km spatial reso...
More recently, snow accumulation and snowmelt models for their calculations are forced to apply data...
The simulation of snow water equivalent (SWE) remains difficult for regional climate models. Accurat...