A Comparison of GLDAS Soil Moisture Anomalies against Standardized Precipitation Index and Multisatellite Estimations over South America
暂无分享,去创建一个
A. Celeste Saulo | O. Penalba | J. Rivera | A. Saulo | Pablo C. Spennemann | Juan Antonio Rivera | Olga C. Penalba | P. Spennemann
[1] R. Houborg,et al. Drought indicators based on model‐assimilated Gravity Recovery and Climate Experiment (GRACE) terrestrial water storage observations , 2012 .
[2] J. Janowiak,et al. The Version 2 Global Precipitation Climatology Project (GPCP) Monthly Precipitation Analysis (1979-Present) , 2003 .
[3] Benjamin F. Zaitchik,et al. Evaluation of the Global Land Data Assimilation System using global river discharge data and a source‐to‐sink routing scheme , 2010 .
[4] Jeffrey P. Walker,et al. THE GLOBAL LAND DATA ASSIMILATION SYSTEM , 2004 .
[5] Xingguo Mo,et al. Evaluation of Reanalysis Soil Moisture Simulations Using Updated Chinese Soil Moisture Observations , 2005 .
[6] Hui Wang,et al. Prospects for Dynamical Prediction of Meteorological Drought , 2011 .
[7] Yi Y. Liu,et al. Evaluating global trends (1988–2010) in harmonized multi‐satellite surface soil moisture , 2012 .
[8] K. Mo,et al. Model-Based Drought Indices over the United States , 2008 .
[9] A. Robock,et al. The Global Soil Moisture Data Bank , 2000 .
[10] Sethu Raman,et al. Adopting drought indices for estimating soil moisture: A North Carolina case study , 2002 .
[11] Huug van den Dool,et al. Analysis of model-calculated soil moisture over the United States (1931-1993) and applications to long-range temperature forecasts , 1996 .
[12] Alan K. Betts,et al. Land‐Surface‐Atmosphere Coupling in Observations and Models , 2009 .
[13] Yi Y. Liu,et al. Trend-preserving blending of passive and active microwave soil moisture retrievals , 2012 .
[14] S. Seneviratne,et al. Investigating soil moisture-climate interactions in a changing climate: A review , 2010 .
[15] A. Robock,et al. The International Soil Moisture Network: a data hosting facility for global in situ soil moisture measurements , 2011 .
[16] M. Hayes,et al. Using the standardized precipitation index for flood risk monitoring , 2002 .
[17] M. Ek,et al. Evaluation of multi-model simulated soil moisture in NLDAS-2 , 2014 .
[18] Rasmus Houborg,et al. Drought Indicators Based on Model Assimilated GRACE Terrestrial Water Storage Observations , 2012 .
[19] T. McKee,et al. THE RELATIONSHIP OF DROUGHT FREQUENCY AND DURATION TO TIME SCALES , 1993 .
[20] C. Tucker,et al. Satellite remote sensing of primary production , 1986 .
[21] L. Ji,et al. Assessing vegetation response to drought in the northern Great Plains using vegetation and drought indices , 2003 .
[22] O. Penalba,et al. Future changes in drought characteristics over southern South America projected by a CMIP5 multi-model ensemble , 2013 .
[23] Mingquan Mu,et al. Forty‐five years of observed soil moisture in the Ukraine: No summer desiccation (yet) , 2004 .
[24] Naota Hanasaki,et al. GSWP-2 Multimodel Analysis and Implications for Our Perception of the Land Surface , 2006 .
[25] Cheng-Hsuan Lu,et al. The Predictability of Soil Moisture and Near-Surface Temperature in Hindcasts of the NCEP Seasonal Forecast Model , 2003 .
[26] G. V. Zucarelli,et al. Climatology of water excesses and shortages in the La Plata Basin , 2010 .
[27] Melissa Widhalm,et al. The Lincoln Declaration on Drought Indices: Universal Meteorological Drought Index Recommended , 2011 .
[28] Eric F. Wood,et al. One-dimensional statistical dynamic representation of subgrid spatial variability of precipitation in the two-layer variable infiltration capacity model , 1996 .
[29] S. Seneviratne,et al. Hot days induced by precipitation deficits at the global scale , 2012, Proceedings of the National Academy of Sciences.
[30] W. Wagner,et al. Fusion of active and passive microwave observations to create an Essential Climate Variable data record on soil moisture , 2012 .
[31] J. Thepaut,et al. The ERA‐Interim reanalysis: configuration and performance of the data assimilation system , 2011 .
[32] Y. Xue,et al. Modeling of land surface evaporation by four schemes and comparison with FIFE observations , 1996 .
[33] D. Lettenmaier,et al. A simple hydrologically based model of land surface water and energy fluxes for general circulation models , 1994 .
[34] R. Dickinson,et al. The land surface climatology of the community land model coupled to the NCAR community climate model , 2002 .
[35] Jürgen Vogt,et al. TOWARD GLOBAL DROUGHT EARLY WARNING CAPABILITY Expanding International Cooperation for the Development of a Framework for Monitoring and Forecasting , 2013 .
[36] T. Meyers,et al. Sensitivity of Land Surface Simulations to Model Physics, Land Characteristics, and Forcings, at Four CEOP Sites , 2007 .
[37] O. Penalba,et al. The CLARIS LPB database: constructing a long‐term daily hydro‐meteorological dataset for La Plata Basin, Southern South America , 2014 .
[38] E. Wood,et al. Development of a 50-Year High-Resolution Global Dataset of Meteorological Forcings for Land Surface Modeling , 2006 .
[39] W. Wagner,et al. Skill and Global Trend Analysis of Soil Moisture from Reanalyses and Microwave Remote Sensing , 2013 .
[40] E. Wood,et al. Global Trends and Variability in Soil Moisture and Drought Characteristics, 1950–2000, from Observation-Driven Simulations of the Terrestrial Hydrologic Cycle , 2008 .
[41] B. Lloyd‐Hughes,et al. A drought climatology for Europe , 2002 .