A017-04
GeoNEX: A geostationary earth observatory

Monday, 7 December 2020: 07:28
Virtual
Ramakrishna R Nemani1, Weile Wang2, Andrew Michaelis3, Satya Kalluri4, Tsengdar J Lee5, Alexei Lyapustin6, Atsushi Higuchi7, Hideaki Takenaka8, Jia Zhang9 and Jennifer L Dungan1, (1)NASA Ames Research Center, Moffett Field, CA, United States, (2)CSUMB & NASA/AMES, Seaside, CA, United States, (3)NASA Ames Research Center/University Corporation MB, Moffett Field, CA, United States, (4)NOAA College Park, College Park, MD, United States, (5)NASA, Burke, VA, United States, (6)NASA Goddard Space Flight Center, Greenbelt, MD, United States, (7)Center for Environmental Remote Sensing, Chiba University, Chiba, Japan, (8)Chiba University, Chiba, Japan, (9)Carnegie Mellon University Silicon Valley, Moffett Field, CA, United States
Abstract:
The latest generation of geostationary satellites (Himawari 8/9, GOES-16/17, FY-4, GK-2A) carries sensors that closely mimic the spatial and spectral characteristics of widely used polar-orbiting, global monitoring sensors such as MODIS and VIIRS. When combined, data from various currently operating/planned geostationary platforms provide a geo-ring of hyper-temporal (5-10 minutes), multispectral observations at spatial resolutions as high as 500 m. These high frequency observations offer exciting new possibilities for monitoring our planet, including better retrievals of geophysical variables by overcoming cloud cover, enabling studies of diurnally varying phenomena in the atmosphere, land, and the oceans, and support operational decision-making in agriculture, hydrology and disaster management. The NASA Earth Exchange (NEX) team, in collaboration with scientists from JAXA, KARI, NOAA and other international institutions, created the GeoNEX (www.nasa.gov/geonex) pipeline to integrate data from all available geostationary platforms and produce and distribute spatially, temporally, and radiometrically consistent data for the earth science community. We envision various institutions adapting the Geo component (e.g., GeoNOAA, GeoKARI, GeoChiba, GeoJAXA, GeoCMA) and customizing the pipeline and downstream products to serve the local/regional research and applied science communities. To facilitate collaborative work among the partners, we have established the OpenNEX platform on the public cloud. OpenNEX provides researchers, developers, educators, and ordinary users with easy access to an integrated Earth science computational and data platform, enabling citizen scientists and application developers to realize the full value of GeoNEX data assets and software tools.