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First 1713 results for ” SP Näsholm”

  1. Interpreting extreme climate impacts from large ensemble simulations—are they unseen or unrealistic?

    Large-ensemble climate model simulations can provide deeper understanding of the characteristics ...

    T Kelder, N Wanders, K van der Wiel, TI Marjoribanks, LJ Slater, RI Wilby, C Prudhomme | Journal: Environmental Research Letters | Volume: 17 | Year: 2022 | First page: 044052 | doi: 10.1088/1748-9326/ac5cf4

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  2. Modeling and simulating spatial extremes by combining extreme value theory with generative adversarial networks

    Modeling dependencies between climate extremes is important for climate risk assessment, for inst...

    Y Boulaguiem, J Zschleischler, E Vignotto, K van der Wiel, S Engelke | Journal: Environmental Data Science | Volume: 1 | Year: 2022 | First page: e5 | doi: 10.1017/eds.2022.4

    Publication

  3. Description and evaluation of the tropospheric aerosol scheme in the Integrated Forecasting System (IFS-AER, cycle 47R1) of ECMWF

    This article describes the Integrated Forecasting System aerosol scheme (IFS-AER) used operationa...

    Remy S., Kipling Z., Huijnen V., Flemming J., Nabat P., Michou M., Ades M., Engelen R., Peuch V.-H. | Journal: Geoscientific Model Development | Volume: 15 (12) | Year: 2022 | First page: 4881 | Last page: 4912 | doi: 10.5194/gmd-15-4881-2022

    Publication

  4. Analysis of Data-Derived SeaWinds Normalized Radar Cross-Section Noise

    The normalized standard deviation (Kp) of the noise that affects scatterometer Normalized Radar C...

    Giuseppe Grieco, Ad Stoffelen, Anton Verhoef, Jur Vogelzang, Marcos Portabella | Journal: Remote Sensing | Volume: 14 | Year: 2022 | doi: https://doi.org/10.3390/rs14215444

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  5. Heat Transfer Through Grass: A Diffusive Approach

    Heat transport through short and closed vegetation such as grass is modelled by a simple diffusio...

    Steven J. A. van der Linden · Maarten T. Kruis · Oscar K. Hartogensis · Arnold F. Moene · Fred C. Bosveld ·Bas J. H. vande Wiel | Journal: Boundary-Layer Meteorology | Volume: 184 | Year: 2022 | First page: 251 | Last page: 276 | doi: https://doi.org/10.1007/s10546-022-00708-7

    Publication