Juerg schmidli eth

juerg schmidli eth

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TL;DR: In this paper, the authors provide a synthesis of to applied research; how the of soil moisture for the to enable stakeholders and managers that are robust to future on adaptation and mitigation strategies in the face of many uncertainties about etn future. Here we investigate three different. source

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Juerg Schmidli was also partly supported by the Hans Ertel Centre for Weather Research. Thesis, ETH Zurich, Zurich, Switzerland, , Senior Scientist and Lecturer, Institute for Atmospheric and Climate Sciences, ETH Zurich, Switzerland ; , Visiting Research Scientist, National. Improving the understanding of atmospheric boundary layers, local weather and regional climate processes, with a focus on complex terrain effects.
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Estimation of extreme winds over the wider Adriatic region. Analysis of the wind response to resolved versus parametrized turbulent orographic drag over moderately complex terrain. How is orographic gravity-wave drag affected by a stable boundary layer? Influence of the background wind on the local soil moisture-precipitation feedback. An open question is why wetter soils can result in either an increase or a decrease of precipitation positive or negative soil moisture�precipitation feedback, respectively.