The raindrop size distribution (DSD) is vital for applications such as quantitative precipitation estimation, understanding microphysical processes, and validation/improvement of two-moment bulk microphysical schemes. We trace the history of the DSD representation and its linkage to polarimetric radar observables from functional forms (exponential, gamma, and generalized gamma models) and its normalization (un-normalized, single/double-moment scaling normalized). The four-parameter generalized gamma model is a good candidate for the optimal representation of the DSD variability. A radar-based disdrometer was found to describe the five archetypical shapes (from Montreal, Canada) consisting of drizzle, the larger precipitation drops and the ‘...
none3siThe NASA's Global Precipitation Measurement (GPM) mission dual-frequency precipitation radar ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
A new technique for estimating the raindrop size distribution (DSD) from polarimetric radar data is ...
Estimation of raindrop size distribution over large spatial and temporal scales has been a long-stan...
Raindrop size distributions (DSDs) play a crucial role in quantitative rainfall estimation using wea...
The raindrop size distribution (DSD) is fundamental for quantitative precipitation estimation (QPE) ...
This study presents a two-dimensional variational approach to retrieving raindrop size distributions...
A method for estimating three parameters of a gamma raindrop size distribution (DSD) model and the r...
Double-moment normalization of the drop size distribution (DSD) summarizes the DSD in a compact way,...
In precipitating systems, the drop-size distribution (DSD) is critical for characterization of the m...
The lower-order moments of the drop size distribution (DSD) have generally been considered difficult...
To date, one of the most widely used parametric forms for modeling raindrop size distribution (DSD) ...
Many aspects of microphysical variations within supercells are not well understood, even though they...
The raindrop size distributions (DSD) are important in the parameterizations of cloud microphysical ...
none3siThe NASA's Global Precipitation Measurement (GPM) mission dual-frequency precipitation radar ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
A new technique for estimating the raindrop size distribution (DSD) from polarimetric radar data is ...
Estimation of raindrop size distribution over large spatial and temporal scales has been a long-stan...
Raindrop size distributions (DSDs) play a crucial role in quantitative rainfall estimation using wea...
The raindrop size distribution (DSD) is fundamental for quantitative precipitation estimation (QPE) ...
This study presents a two-dimensional variational approach to retrieving raindrop size distributions...
A method for estimating three parameters of a gamma raindrop size distribution (DSD) model and the r...
Double-moment normalization of the drop size distribution (DSD) summarizes the DSD in a compact way,...
In precipitating systems, the drop-size distribution (DSD) is critical for characterization of the m...
The lower-order moments of the drop size distribution (DSD) have generally been considered difficult...
To date, one of the most widely used parametric forms for modeling raindrop size distribution (DSD) ...
Many aspects of microphysical variations within supercells are not well understood, even though they...
The raindrop size distributions (DSD) are important in the parameterizations of cloud microphysical ...
none3siThe NASA's Global Precipitation Measurement (GPM) mission dual-frequency precipitation radar ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...