Search Results - "Kavcic, Iva"

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  1. 1

    A Lagrangian vertical coordinate version of the ENDGame dynamical core. Part I: Formulation, remapping strategies, and robustness by Kavčič, Iva, Thuburn, John

    “…Previous work provides evidence that Lagrangian conservation and related properties of a numerical model dynamical core can be improved by the use of a…”
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    Journal Article
  2. 2

    A Lagrangian vertical coordinate version of the ENDGame dynamical core. Part II: Evaluation of Lagrangian conservation properties by Kavčič, Iva, Thuburn, John

    “…A baroclinic instability test case is used to compare the Lagrangian conservation properties of three versions of a semi‐implicit semi‐Lagrangian dynamical…”
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    Journal Article
  3. 3

    Simulations of idealised 3D atmospheric flows on terrestrial planets using LFRic-Atmosphere by Sergeev, Denis E, Mayne, Nathan J, Bendall, Thomas, Boutle, Ian A, Brown, Alex, Kavcic, Iva, Kent, James, Kohary, Krisztian, Manners, James, Melvin, Thomas, Olivier, Enrico, Ragta, Lokesh K, Shipway, Ben, Wakelin, Jon, Wood, Nigel, Zerroukat, Mohamed

    Published in Geoscientific Model Development (10-10-2023)
    “…We demonstrate that LFRic-Atmosphere, a model built using the Met Office's GungHo dynamical core, is able to reproduce idealised large-scale atmospheric…”
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    Journal Article
  4. 4

    Katabatic flow with Coriolis effect and gradually varying eddy diffusivity by Kavčič, Iva, Grisogono, Branko

    Published in Boundary - layer meteorology (01-11-2007)
    “…Katabatic flows over high-latitude long glaciers experience the Coriolis force. A sloped atmospheric boundary-layer (ABL) flow is addressed which partly…”
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    Journal Article Conference Proceeding
  5. 5

    Including Coriolis effects in the Prandtl model for katabatic flow by Stiperski, Ivana, Kavčič, Iva, Grisogono, Branko, Durran, Dale R.

    “…Katabatic flow down long glaciers in high latitudes experiences deflection due to the Coriolis force. If the Coriolis force is added to the classic Prandtl…”
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    Journal Article
  6. 6

    Simulations of idealised 3D atmospheric flows on terrestrial planets using LFRic-Atmosphere by Sergeev, Denis E, Mayne, Nathan J, Bendall, Thomas, Boutle, Ian A, Brown, Alex, Kavcic, Iva, Kent, James, Kohary, Krisztian, Manners, James, Melvin, Thomas, Olivier, Enrico, Ragta, Lokesh K, Shipway, Ben J, Wakelin, Jon, Wood, Nigel, Zerroukat, Mohamed

    Published 06-06-2023
    “…We demonstrate that LFRic-Atmosphere, a model built using the Met Office's GungHo dynamical core, is able to reproduce idealised large-scale atmospheric…”
    Get full text
    Journal Article