Utilizing high-resolution, full-physics simulations to understand boundary layer processes over glaciers and major Alpine valleys in mountainous terrain
Datum:
Ort:
Hörsaal SLF
Organisiert von:
SLF
Vortrag:
Brigitta Goger, Center for Climate SystemsModeling (C2SM), ETH Zurich
Moderation:
Rebecca Mott
Sprache(n):
English
Veranstaltungstyp:
Vorträge und Kolloquien
Zielpublikum:
Everyone who is interested
In this presentation, we will present two model setups over complex terrain: First, we show large-eddy simulations (LES) at dx=48m with the WRF model over the Hintereisferner glacier, Austria. We validate the simulations with eddy-covariance stations from the HEFEX 1 experiment, and show that the local glacier boundary layer development and surface sensible heat fluxes strongly depend on the synoptic flow direction. In case of a North-Westerly flow direction, a gravity wave forms over the glacier valley, leading to the erosion of the local glacier boundary layer. As a second step, we modify the ice surfaces in the model to investigate whether glaciers nearby influence the formation and breaking pattern of the gravity wave over the glacier surface, and henceforth the response of the local boundary layer itself.
The second model setup we will show is a first model evaluation study of the ICON model (the operational NWP model of MeteoSwiss) over truly complex terrain, in the Inn Valley, Austria. We utilize the observations from the CROSSINN campaign to validate the model performance at horizontal grid spacings of 1km, 500m, 250m, and 125m, and identify resolution-dependent current challenges and shortcomings (e.g., the surface layer scheme and turbulence parameterizations). We evaluate the representation of thermally-induced flows such as the up-valley wind in the model, but also show the impact of the horizontal grid spacing on the formation of mid-level clouds. As a final step, this model validation aims to give a performance baseline for a large LES domain over Switzerland, which is currently experimental.
https://wsl.zoom.us/j/67464424633?pwd=0D608gplYVTrGsrRSPKUZd2Ilu3CAl.1