Stratiform and convective precipitations have a different space-time evolution and a different impact on EM waves propagating through the atmosphere. Here a method is presented to discriminate between stratiform and convective rain, based on the knowledge of the local yearly cumulative distribution function P(R). The method exploits a modification of the EXCELL rain cell model
This contribution presents the prediction of monthly rain attenuation statistics by means of the Str...
From radar observations of rain fields at midlatitudes, a new physical model of rain cells is propos...
This paper presents an enhanced version of the SC EXCELL model (stratiform convective exponential CE...
Stratiform and convective precipitations have a different space-time evolution and a different impa...
An improved version of the exponential cell (EXCELL) rain attenuation model is presented here. Analo...
This study investigates the sensitivity of the estimated monthly convective rain fraction — that is,...
In this paper, we present two micro rain radar-based approaches to discriminate between stratiform a...
An improved version of the EXCELL rain attenuation model which, analogously to the original one, pre...
A stochastic method to disaggregate rainfall fields into DSD fields is proposed. It is based on a pr...
We successfully implemented our EAUcup parameterization of convection in our most recent geodesic-gr...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
Rain type classification into convective and stratiform is an essential step required to improve qua...
This contribution presents the prediction of monthly rain attenuation statistics by means of the Str...
From radar observations of rain fields at midlatitudes, a new physical model of rain cells is propos...
This paper presents an enhanced version of the SC EXCELL model (stratiform convective exponential CE...
Stratiform and convective precipitations have a different space-time evolution and a different impa...
An improved version of the exponential cell (EXCELL) rain attenuation model is presented here. Analo...
This study investigates the sensitivity of the estimated monthly convective rain fraction — that is,...
In this paper, we present two micro rain radar-based approaches to discriminate between stratiform a...
An improved version of the EXCELL rain attenuation model which, analogously to the original one, pre...
A stochastic method to disaggregate rainfall fields into DSD fields is proposed. It is based on a pr...
We successfully implemented our EAUcup parameterization of convection in our most recent geodesic-gr...
Drop size distribution is a fundamental property of rainfall for two main reasons: the shape of the ...
Rain type classification into convective and stratiform is an essential step required to improve qua...
This contribution presents the prediction of monthly rain attenuation statistics by means of the Str...
From radar observations of rain fields at midlatitudes, a new physical model of rain cells is propos...
This paper presents an enhanced version of the SC EXCELL model (stratiform convective exponential CE...