Closing and balancing Earths global water cycle remains a challenge for the climate community. Observations are limited in duration, global coverage, and frequency, and not all water cycle terms are adequately observed. Reanalyses aim to fill the gaps through the assimilation of as many atmospheric water vapor observations as possible. Former generations of reanalyses have demonstrated a number of systematic problems that have limited their use in climate studies, especially regarding low-frequency trends. This study characterizes the NASA Modern-Era Retrospective Analysis for Research and Applications version 2 (MERRA-2) water cycle relative to contemporary reanalyses and observations. MERRA-2 includes measures intended to minimize the spu...
International audienceThis study investigates the means, variability, and trends in integrated water...
An analysis and evaluation has been performed of global datasets on column-integrated water vapor (p...
Understanding observed changes to the global water cycle is key to predicting future climate changes...
In the Summer of 2009, NASA's Modern Era Retrospective-analysis for Research and Applications (MERRA...
Reanalyses integrate multitudes of satellite and conventional observations data assimilation and num...
Motivated by the question of whether recent indications of decadal climate variability and a possibl...
The assimilation of observations in reanalyses incurs the potential for the physical terms of budget...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
An assessment is made of the global energy and hydrological cycles from eight current atmospheric re...
Evaporation from the world's oceans constitutes the largest component of the global water balance. I...
Quantifying the global hydrological cycle and its variability across various time scales remains a c...
Multi-decadal reanalysis datasets have been widely used to study the global terrestrial water and en...
International audienceThis study investigates the means, variability, and trends in integrated water...
International audienceThis study investigates the means, variability, and trends in integrated water...
An analysis and evaluation has been performed of global datasets on column-integrated water vapor (p...
Understanding observed changes to the global water cycle is key to predicting future climate changes...
In the Summer of 2009, NASA's Modern Era Retrospective-analysis for Research and Applications (MERRA...
Reanalyses integrate multitudes of satellite and conventional observations data assimilation and num...
Motivated by the question of whether recent indications of decadal climate variability and a possibl...
The assimilation of observations in reanalyses incurs the potential for the physical terms of budget...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
International audienceAtmospheric reanalyses provide a consistent representation of the three-dimens...
An assessment is made of the global energy and hydrological cycles from eight current atmospheric re...
Evaporation from the world's oceans constitutes the largest component of the global water balance. I...
Quantifying the global hydrological cycle and its variability across various time scales remains a c...
Multi-decadal reanalysis datasets have been widely used to study the global terrestrial water and en...
International audienceThis study investigates the means, variability, and trends in integrated water...
International audienceThis study investigates the means, variability, and trends in integrated water...
An analysis and evaluation has been performed of global datasets on column-integrated water vapor (p...
Understanding observed changes to the global water cycle is key to predicting future climate changes...