A significant part of the uncertainty in satellite-based precipitation products stems from differing assumptions about drop size distributions (DSDs). Satellite radar-based retrieval algorithms rely on DSD assumptions that may be overly simplistic, whereas radiometers further struggle to distinguish cloud water from rain. We utilize the Ocean Rainfall and Ice-phase Precipitation Measurement Network (OceanRAIN), version 1.0, dataset to examine the impact of DSD variability on the ability of satellite measurements to accurately estimate rates of warm rainfall. We use the binned dis-drometer counts and a simple model of the atmosphere to simulate observations for three satellite architectures. Two are similar to existing instrument combination...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
In this study, we develop statistical relationships between radar observables and drop size distribu...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
2022 Spring.Includes bibliographical references.Satellite-based oceanic precipitation estimates, par...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
The Global Precipitation Measurement mission is a major U.S.–Japan joint mission to understand the p...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
An experimental retrieval of oceanic warm rain is presented, extending a previous variational algor...
Raindrop size distributions (DSDs) play a crucial role in quantitative rainfall estimation using wea...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8-year data...
The retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DPR) on b...
none5siThe retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DP...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
The retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DPR) on b...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
In this study, we develop statistical relationships between radar observables and drop size distribu...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
2022 Spring.Includes bibliographical references.Satellite-based oceanic precipitation estimates, par...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
The Global Precipitation Measurement mission is a major U.S.–Japan joint mission to understand the p...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
An experimental retrieval of oceanic warm rain is presented, extending a previous variational algor...
Raindrop size distributions (DSDs) play a crucial role in quantitative rainfall estimation using wea...
Representation of the drop size distribution (DSD) of rainfall is a key element of characterizing pr...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8-year data...
The retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DPR) on b...
none5siThe retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DP...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
The retrieval of raindrop size distribution (DSD) from dual frequency precipitation radar (DPR) on b...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...
In this study, we develop statistical relationships between radar observables and drop size distribu...
In this study, we analyze an in situ shipboard global ocean drop size distribution (DSD) 8‐year data...