Accurate estimation of precipitation is crucial for fundamental input to various hydrometeorological applications. Ground-based precipitation data suffer limitations associated with spatial resolution and coverage; hence, satellite precipitation products can be used to complement traditional rain gauge systems. However, the satellite precipitation data need to be validated before extensive use in the applications. Hence, we conducted a thorough validation of the Global Precipitation Measurement (GPM) Integrated Multi-satellite Retrievals (IMERG) product for all of Iran. The study focused on investigating the performance of daily and monthly GPM IMERG (early, late, final, and monthly) products by comparing them with ground-based precipitatio...
Accurate estimation of high-resolution satellite precipitation products like Global Precipitation Me...
The Tropical Rainfall Measuring Mission (TRMM) and Global Precipitation Mission (GPM) are the most i...
The comprehensive assessment of the Integrated Multi-satellitE Retrievals for the Global Precipitati...
Accurate estimation of precipitation is crucial for fundamental input to various hydrometeorological...
The new generation of weather observatory satellites, namely Global Precipitation Measurement (GPM) ...
Precipitation, as an important component of the Earth’s water cycle, plays a determinant role in var...
Ground validation of satellite-based precipitation products is necessary to evaluate the performance...
Precipitation is one of the integral components of the global hydrological cycle. Accurate estimatio...
It is evident that reliable hydrologic prediction and water resource management are still a challeng...
Precipitation in semi-arid countries such as Iran is one of the most important elements for all aspe...
Measuring rainfall precisely is always challenging due to its high variability, particularly in arid...
A new precipitation dataset is provided since 2014 by the Global Precipitation Measurement (GPM) sat...
Accurate remote-sensed precipitation data are crucial to the effective monitoring and analysis of fl...
International audienceA new precipitation dataset is provided since 2014 by the Global Precipitation...
Extreme precipitation events have increasingly happened at global and regional scales as the global ...
Accurate estimation of high-resolution satellite precipitation products like Global Precipitation Me...
The Tropical Rainfall Measuring Mission (TRMM) and Global Precipitation Mission (GPM) are the most i...
The comprehensive assessment of the Integrated Multi-satellitE Retrievals for the Global Precipitati...
Accurate estimation of precipitation is crucial for fundamental input to various hydrometeorological...
The new generation of weather observatory satellites, namely Global Precipitation Measurement (GPM) ...
Precipitation, as an important component of the Earth’s water cycle, plays a determinant role in var...
Ground validation of satellite-based precipitation products is necessary to evaluate the performance...
Precipitation is one of the integral components of the global hydrological cycle. Accurate estimatio...
It is evident that reliable hydrologic prediction and water resource management are still a challeng...
Precipitation in semi-arid countries such as Iran is one of the most important elements for all aspe...
Measuring rainfall precisely is always challenging due to its high variability, particularly in arid...
A new precipitation dataset is provided since 2014 by the Global Precipitation Measurement (GPM) sat...
Accurate remote-sensed precipitation data are crucial to the effective monitoring and analysis of fl...
International audienceA new precipitation dataset is provided since 2014 by the Global Precipitation...
Extreme precipitation events have increasingly happened at global and regional scales as the global ...
Accurate estimation of high-resolution satellite precipitation products like Global Precipitation Me...
The Tropical Rainfall Measuring Mission (TRMM) and Global Precipitation Mission (GPM) are the most i...
The comprehensive assessment of the Integrated Multi-satellitE Retrievals for the Global Precipitati...