This study examines how different microphysical parameterization schemes influence orographically induced precipitation and the distributions of hydrometeors and water vapour for midlatitude summer conditions in the Weather Research and Forecasting (WRF) model. A high-resolution two-dimensional idealized simulation is used to assess the differences between the schemes in which a moist air flow is interacting with a bell-shaped 2 km high mountain. Periodic lateral boundary conditions are chosen to recirculate atmospheric water in the domain. It is found that the 13 selected microphysical schemes conserve the water in the model domain. The gain or loss of water is less than 0.81% over a simulation time interval of 61 days. The differences of ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
International audienceA better understanding of regional-scale precipitation patterns in the Himalay...
Two different bulk-parameterization schemes of cloud microphysics alternatively used in a meso-beta-...
Microphysical parameterizations (MPs) approximate the very small-scale behavior associated with clou...
Microphysical parameterizations (MPs) approximate the very small-scale behavior associated with clou...
Comparisons between bin and bulk cloud microphysics schemes are conducted by simulating a heavy prec...
Microphysics parameterization becomes increasingly important as the model grid spacing increases tow...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
International audienceA better understanding of regional-scale precipitation patterns in the Himalay...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
International audienceA better understanding of regional-scale precipitation patterns in the Himalay...
Two different bulk-parameterization schemes of cloud microphysics alternatively used in a meso-beta-...
Microphysical parameterizations (MPs) approximate the very small-scale behavior associated with clou...
Microphysical parameterizations (MPs) approximate the very small-scale behavior associated with clou...
Comparisons between bin and bulk cloud microphysics schemes are conducted by simulating a heavy prec...
Microphysics parameterization becomes increasingly important as the model grid spacing increases tow...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
The data collected during three contrasting Intensive Observing Periods (IOPs) of the Mesoscale Alpi...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
International audienceA better understanding of regional-scale precipitation patterns in the Himalay...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
A better understanding of regional-scale precipitation patterns in the Himalayan region is required ...
International audienceA better understanding of regional-scale precipitation patterns in the Himalay...