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First 2436 results for ” Are Olsen”

  1. Spatial extrapolation of lysimeter results using thermal infrared imaging

    Measuring evaporation (E) with lysimeters is costly and prone to numerous errors. By comparing th...

    BR Voortman, FC Bosveld, RP Bartholomeus, JPM Witte | Status: published | Journal: J. Hydrol. | Volume: 543 | Year: 2016 | First page: 230 | Last page: 241 | doi: 10.1016/j.jhydrol.2016.09.064

    Publication

  2. Stochastically forced mode water variability

    Substantial interannual to decadal variability is observed in the properties of subtropical m...

    W Hazeleger, SS Drijfhout | Status: published | Journal: J. Phys. Oceanogr. | Volume: 29 | Year: 1999 | First page: 1772 | Last page: 1786 | doi: 10.1175/1520-0485(1999)029<1772:SFMWV>2.0.CO;2

    Publication

  3. Boundary-layer model results for wind-sea growth

    A numerical model of the boundary layer of the atmosphere above a gravity surface wave is rev...

    G Burgers, VK Makin | Status: published | Journal: J. Phys. Oceanogr. | Volume: 23 | Year: 1993 | First page: 372 | Last page: 385

    Publication

  4. Exceptionally Low Arctic Stratospheric Ozone in Spring 2020 as Seen in the CAMS Reanalysis

    A reanalysis data set produced by the Copernicus Atmosphere Monitoring service (CAMS reanalysis, ...

    A Inness, S Chabrillat, J Flemming, V Huijnen, B Langenrock, J Nicolas, I Polichtchouk, M Razinger | Status: published | Journal: J. Geophys. Res. | Year: 2020 | First page: 1 | Last page: 16 | doi: https://doi.org/10.1029/2020JD033563

    Publication

  5. Lower thermosphere–ionosphere (LTI) quantities: Current status of measuring techniques and models

    The lower-thermosphere–ionosphere (LTI) system consists of the upper atmosphere and the lower par...

    M Palmroth, M Grandin, T Sarris, E Doornbos, S Tourgaidis, A Aikio, S Buchert, M Clilverd | Status: submitted | Journal: Annales Geophysicae | Year: 2020 | doi: 10.5194/angeo-2020-42

    Publication