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First 105 results for ” DCS Beddows”

  1. Drivers of Caribbean precipitation change due to global warming: analyses and emergent constraint of CMIP6 simulations

    Using 31 CMIP6 models we have analyzed projected future Caribbean precipitation. The model mean p...

    Marta Brotons, Rein Haarsma, Nadia Bloemendaal, Hylke de Vries, Teddy Allen | Journal: Climate Dynamics | Volume: 62 | Year: 2024 | First page: 3395 | Last page: 3415 | doi: https://doi.org/10.1007/s00382-023-07072-3

    Publication

  2. Transverse structure of tidal and residual flow and sediment concentration in estuaries

    An analytical and a numerical model are used to understand the response of velocity and sediment ...

    KMH Huijts, HE de Swart, GP Schramkowski, HM Schuttelaars | Status: published | Journal: Ocean Dynamics | Volume: 61 | Year: 2011 | First page: 1067 | Last page: 1091 | doi: 10.1007/s10236-011-0414-7

    Publication

  3. Influence of the subcloud layer on the development of a deep convective ensemble

    SJ Boïng, HJJ Jonker, AP Siebesma, W Grabowski | Status: published | Journal: J. Atmos. Sci. | Volume: 69 | Year: 2012 | First page: 2682 | Last page: 2698 | doi: doi: 10.1175/JAS-D-11-0317.1

    Publication

  4. GOME-2A retrievals of tropospheric NO2 in different spectral ranges – influence of penetration depth

    In this study, we present a novel nitrogen dioxide (NO2) differential optical absorption spectros...

    LK Behrens, A Hilboll, A Richter, E Peters, H Eskes, JP Burrows | Status: published | Journal: Atmospheric Measurement Techniques | Volume: 11 | Year: 2018 | First page: 2769 | Last page: 2795 | doi: https://doi.org/10.5194/amt-11-2769-2018

    Publication

  5. A first-of-its-kind multi-model convection permitting ensemble for investigating convective phenomena over Europe and the Mediterranean

    A recently launched project under the auspices of the World Climate Research Program’s (WCRP) Coo...

    E Coppola, S Sobolowski, H de Vries, E van Meijgaard, Et al. | Status: published | Journal: Clim. Dyn. | Year: 2018 | doi: 10.1007/s00382-018-4521-8

    Publication