Using Hyper-resolution Land Surface Modeling to Downscale SMAP Soil Moisture to 30 Meters
Dr. Noemi Vergopolan1, Nathaniel W. Chaney2,3, Ming Pan4, Hylke Beck5, Niko Wanders6,7, Justin Sheffield8,9, Steven Chan10, Andreas Colliander11, Simon H Yueh10, R. Scott Dunbar10 and Eric F Wood5, (1)Princeton / GFDL, Atmospheric and Ocean Sciences Program, Princeton, United States, (2)Duke University, Durham, United States, (3)Duke University, Civil and Environmental Engineering, Durham, United States, (4)Center for Western Weather and Water Extremes (CW3E), Scripps Institution of Oceanography, University of California San Diego, La Jolla, United States, (5)Princeton University, Civil and Environmental Engineering, Princeton, NJ, United States, (6)Utrecht University, Physical Geography, Utrecht, Netherlands, (7)Utrecht University, Department of Physical Geography, Utrecht, Netherlands, (8)University of Southampton, Southampton, United Kingdom, (9)University of Southampton, Geography and Environment, Southampton, SO14, United Kingdom, (10)Jet Propulsion Laboratory, Pasadena, CA, United States, (11)NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States