Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using In Situ Measurements

Author:

Reichle Rolf H.1,De Lannoy Gabrielle J. M.2,Liu Qing13,Ardizzone Joseph V.13,Colliander Andreas4,Conaty Austin13,Crow Wade5,Jackson Thomas J.5,Jones Lucas A.6,Kimball John S.6,Koster Randal D.1,Mahanama Sarith P.13,Smith Edmond B.13,Berg Aaron7,Bircher Simone8,Bosch David9,Caldwell Todd G.10,Cosh Michael5,González-Zamora Ángel11,Holifield Collins Chandra D.12,Jensen Karsten H.13,Livingston Stan14,Lopez-Baeza Ernesto15,Martínez-Fernández José11,McNairn Heather16,Moghaddam Mahta17,Pacheco Anna16,Pellarin Thierry18,Prueger John19,Rowlandson Tracy7,Seyfried Mark20,Starks Patrick21,Su Zhongbo22,Thibeault Marc23,van der Velde Rogier22,Walker Jeffrey24,Wu Xiaoling24,Zeng Yijian22

Affiliation:

1. NASA Goddard Space Flight Center, Greenbelt, Maryland

2. KU Leuven, Heverlee, Belgium

3. Science Systems and Applications, Inc., Lanham, Maryland

4. Jet Propulsion Laboratory, Pasadena, California

5. Hydrology and Remote Sensing Laboratory, Agricultural Research Service, USDA, Beltsville, Maryland

6. University of Montana, Missoula, Montana

7. Department of Geography, University of Guelph, Guelph, Ontario, Canada

8. CESBIO, University of Toulouse, CNES/CNRS/IRD/UPS, Toulouse, France

9. Southeast Watershed Research, Agricultural Research Service, USDA, Tifton, Georgia

10. Jackson School of Geosciences, The University of Texas at Austin, Austin, Texas

11. University of Salamanca, Villamayor, Spain

12. Southwest Watershed Research Center, Agricultural Research Service, USDA, Tucson, Arizona

13. Department of Geosciences and Natural Resource Management, University of Copenhagen, Copenhagen, Denmark

14. National Soil Erosion Research Laboratory, Agricultural Research Service, USDA, West Lafayette, Indiana

15. University of Valencia, Valencia, Spain

16. Agriculture and Agri-Food Canada, Ottawa, Ontario, Canada

17. University of Southern California, Los Angeles, California

18. Université Grenoble Alpes, CNRS, IRD, Grenoble INP, IGE, Grenoble, France

19. National Laboratory for Agriculture and the Environment, Agricultural Research Service, USDA, Ames, Iowa

20. Northwest Watershed Research Center, Agricultural Research Service, USDA, Boise, Idaho

21. Grazinglands Research Laboratory, Agricultural Research Service, USDA, El Reno, Oklahoma

22. Faculty of Geo-Information Science and Earth Observations (ITC), University of Twente, Enschede, Netherlands

23. Comisión Nacional de Actividades Espaciales, Buenos Aires, Argentina

24. Monash University, Clayton, Victoria, Australia

Abstract

Abstract The Soil Moisture Active Passive (SMAP) mission Level-4 Surface and Root-Zone Soil Moisture (L4_SM) data product is generated by assimilating SMAP L-band brightness temperature observations into the NASA Catchment land surface model. The L4_SM product is available from 31 March 2015 to present (within 3 days from real time) and provides 3-hourly, global, 9-km resolution estimates of surface (0–5 cm) and root-zone (0–100 cm) soil moisture and land surface conditions. This study presents an overview of the L4_SM algorithm, validation approach, and product assessment versus in situ measurements. Core validation sites provide spatially averaged surface (root zone) soil moisture measurements for 43 (17) “reference pixels” at 9- and 36-km gridcell scales located in 17 (7) distinct watersheds. Sparse networks provide point-scale measurements of surface (root zone) soil moisture at 406 (311) locations. Core validation site results indicate that the L4_SM product meets its soil moisture accuracy requirement, specified as an unbiased RMSE (ubRMSE, or standard deviation of the error) of 0.04 m3 m−3 or better. The ubRMSE for L4_SM surface (root zone) soil moisture is 0.038 m3 m−3 (0.030 m3 m−3) at the 9-km scale and 0.035 m3 m−3 (0.026 m3 m−3) at the 36-km scale. The L4_SM estimates improve (significantly at the 5% level for surface soil moisture) over model-only estimates, which do not benefit from the assimilation of SMAP brightness temperature observations and have a 9-km surface (root zone) ubRMSE of 0.042 m3 m−3 (0.032 m3 m−3). Time series correlations exhibit similar relative performance. The sparse network results corroborate these findings over a greater variety of climate and land cover conditions.

Funder

National Aeronautics and Space Administration

Publisher

American Meteorological Society

Subject

Atmospheric Science

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