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Investigating Exchange Processes over Complex Topography: The Innsbruck Box (i-Box)
Author(s) -
Mathias W. Rotach,
Ivana Stiperski,
Oliver Fuhrer,
Brigitta Goger,
Alexander Gohm,
Friedrich Obleitner,
Gabriele Rau,
Eleni Sfyri,
Johannes Vergeiner
Publication year - 2017
Publication title -
bulletin of the american meteorological society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.367
H-Index - 197
eISSN - 1520-0477
pISSN - 0003-0007
DOI - 10.1175/bams-d-15-00246.1
Subject(s) - terrain , meteorology , grid , atmosphere (unit) , climate model , turbulence , term (time) , environmental science , boundary layer , large eddy simulation , geology , computer science , aerospace engineering , climate change , geography , physics , engineering , geodesy , cartography , oceanography , quantum mechanics
The flow and turbulence structure in the atmospheric boundary layer over complex mountainous terrain determines Earth–atmosphere interaction, that is, the exchange of energy, mass, and momentum between the surface over such terrain and the free atmosphere. Numerical models for weather and climate, even when operated at high or very high grid resolution, are known to be deficient, leading to inaccurate local forecasts (weather) or scenarios (climate). The nature and reasons for these deficiencies, however, are difficult to assess because systematic and long-term combined observational/modeling studies in mountainous terrain are missing. The Innsbruck Box (i-Box) project aims at filling in this gap through a network of long-term turbulence sites in truly complex terrain, complemented by similarly continuous (surface based) remote sensing and numerical modeling at high to highest [i.e., large-eddy simulation (LES)] resolution. This contribution details the i-Box approach, the experimental design, and available data, as well as the numerical modeling strategy. The first scientific highlights are presented to illustrate the potential of the i-Box data pool and possible future directions.

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