A180-0012
Using HI-SCALE to Evaluate Parameterizations of Boundary Layer Cloud Fraction: the MYNN-EDMF Scheme
Abstract:
The MYNN-EDMF scheme uses a subgrid multi-plume model to represent upward vertical mixing in the convective boundary layer along with traditional gradient diffusion for non-convective mixing. This design allows the scheme to predict the evolution of and the transition between dry convection and shallow convection in a more unified and physically realistic manner than other formulations. MYNN-EDMF is now being used operationally in the WRF-based Rapid Refresh (RAP) / High Resolution Rapid Refresh (HRRR) system.
Boundary layer clouds, whether deep or shallow, strongly modulate the Earth’s radiative budget through their suppression of surface downwelling shortwave radiation. They also can play a critical role in the vertical transport of heat, momentum, and tracers. Since their formation often occurs on scales too small to be adequately resolved by global- or even regional-scale atmospheric models, there is an ongoing need for parameterizations of subgrid cloud fraction that are appropriate to the whole range from dry (cloud-free) convection to shallow and deep convective cloud states.