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First 606 results for ”D Roemmich”

  1. NWP calibration applied to Aeolus Mie channel winds

    Aeolus is the first Doppler wind lidar (DWL) to measure wind profiles from space. Aeolus is an ES...

    Gert-Jan Marseille, Jos de Kloe, Uwe Marksteiner, Oliver Reitebuch, Michael Rennie, Siebren de Haan | Journal: Quarterly Journal of the Royal Meteorological Society | Volume: 148 | Year: 2022 | First page: 1020 | Last page: 1034 | doi: https://doi.org/10.1002/qj.4244

    Publication

  2. Future Space-Based Doppler Wind Lidar Winds

    The unique European Space Agency (ESA) Earth Explorer Aeolus Doppler Wind Lidar (DWL) is a succes...

    Ad Stoffelen, Gert-Jan Marseille, Tommaso Parinello, Oliver Reitebuch, Michael Rennie, Anne Grete Straume | Journal: 2021 IEEE International Geoscience and Remote Sensing Symposium IGARSS | Year: 2021 | doi: https://doi.org/10.1109/IGARSS47720.2021.9554250

    Publication

  3. Investigating the impact of coupling HARMONIE-WINS50 (cy43) meteorology to LOTOS-EUROS (v2.2.002) on a simulation of NO2 concentrations over the Netherlands

    Meteorological fields calculated by numerical weather prediction (NWP) models drive offline chemi...

    Andrés Yarce Botero, Michiel van Weele, Arjo Segers, Pier Siebesma, and Henk Eskes | Journal: Geosci. Model Dev | Volume: 17 | Year: 2024 | First page: 3765 | Last page: 3781 | doi: https://doi.org/10.5194/gmd-17-3765-2024

    Publication

  4. Wind Profile Satellite Observation Requirements and Capabilities

    The Aeolus mission objectives are to improve numerical weather prediction (NWP) and enhance the u...

    Ad Stoffelen, Angela Benedetti, Régis Borde, Alain Dabas, Pierre Flamant, Mary Forsythe, Mike Hardesty, Lars Isaksen, Erland Källén, Heiner Körnich, Tsengdar Lee, Oliver Reitebuch, Michael Rennie, Lars-Peter Riishøjgaard, Harald Schyberg, Anne Grete Straume, Michael Vaughan | Journal: Bulletin of the American Meteorological Society | Volume: 101 | Year: 2020 | doi: https://doi.org/10.1175/BAMS-D-18-0202.1

    Publication

  5. NRLMSIS 2.0: A whole‐atmosphere empirical model of temperature and neutral species densities

    NRLMSIS® 2.0 is an empirical atmospheric model that extends from the ground to the exobase and de...

    JT Emmert, E Doornbos | Status: published | Journal: J. Geophys. Res. | Year: 2020 | doi: 10.1029/2020EA001321

    Publication