Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vital to the state\u27s economy, ecology and hydrology. The Sand Hills region (58,000 km2) of Nebraska is a unique system of lakes, (∼5%) wetlands, (∼10%) subirrigated meadows, (∼20%) dry valleys and (∼65%) upland sand dune ecosystems. Understanding how each of these land cover types reacts to climate conditions of different water limitations is vital to regional water resource management. This research explores the ecohydrological behavior of different land cover types at the Gudmundsen Sand Hills Research Laboratory (GSRL) near Whitman, Nebraska in the heart of the Sand Hills region of Nebraska by using remote sensing and in-situ estimations of...
The Nebraska SandHills is a vast grassland ecoregion that also serves as the main recharge zone for ...
Reliably and accurately quantifying evapotranspiration (ET) in a spatial and temporal domain is impo...
Understanding energy and water balance processes in the Sandhills is crucial to assess the land-atmo...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Understanding energy and water balance processes in the Sandhills is crucial to assess the land–atmo...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Nebraska SandHills is a vast grassland ecoregion that also serves as the main recharge zone for ...
Reliably and accurately quantifying evapotranspiration (ET) in a spatial and temporal domain is impo...
Understanding energy and water balance processes in the Sandhills is crucial to assess the land-atmo...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Nebraska\u27s dependence upon the High Plains (Ogallala) Aquifer for agricultural production is vita...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Study Region: The Nebraska Sand Hills consisting of four major land cover types: (1) lakes and wetla...
Understanding energy and water balance processes in the Sandhills is crucial to assess the land–atmo...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
Evapotranspiration (ET) plays a significant role in regional and global climate through impacting re...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Sand Hills of Nebraska are a unique physiographical entity, consisting of grass stabilized sand ...
The Nebraska SandHills is a vast grassland ecoregion that also serves as the main recharge zone for ...
Reliably and accurately quantifying evapotranspiration (ET) in a spatial and temporal domain is impo...
Understanding energy and water balance processes in the Sandhills is crucial to assess the land-atmo...