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  • 1
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    Springer
    In:  In: Geoscience Research and Outreach. , ed. by Tong, V. Innovations in Science Education and Technology, 21 . Springer, London, UK, pp. 103-119. ISBN 978-94-007-6942-7
    Publication Date: 2019-09-23
    Description: SFB-Outreach is an outreach project by two major German research consortia in ocean sciences, in which scientists collaborate with secondary schools to produce educational and entertaining video-clips on the background of their research. As a new approach in science communication, experience had to be built up both with the best methods of cooperation and also with innovative ways of presentation. Within the first two years, about two dozen video-clips were produced covering topics from the “use of benthic foraminifera as climate proxies” to “Tsunami generation”. Feedback from questionnaires distributed among the participating pupils shows general enthusiasm with the project, but also identifies strategies for improving shortcomings. A dedicated analysis of the reception of the project’s materials by its target audience (i.e. schools and also the general public) is planned for the second phase of the project.
    Type: Book chapter , NonPeerReviewed
    Format: text
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  • 2
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    Springer
    In:  In: High Performance Computing in Science and Engineering '01. , ed. by Krause, E. and Jäger, W. Springer, Berlin, Germany, pp. 396-405. ISBN 3-540-42675-2
    Publication Date: 2020-05-07
    Description: The ocean takes up a large fraction of the pertubation C02 that enters the atmosphere by human activity. A realistic representation of this uptake in numerical models is essential for future climate studies. Uptake of C02 or other atmospheric trace gases is strongly influenced by oceanic physical variability at spatial scales between 20 and 100 km. Our main goal is to study the effect of this mesoscale variability on the cumulative uptake of anthropogenic C02 and chlorofluorocarbons using an existing model of the ocean circulation in the Atlantic that resolves a significant part of that variability explicitly because of its grid spacing of about 20 km. Results are compared with simulated trace gas distribution obtained from a model with coarser resolution.
    Type: Book chapter , NonPeerReviewed
    Format: text
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  • 3
    Publication Date: 2024-02-26
    Description: Außerschulische Lernorte wie Themenpfade, Geoparks, Weltkulturerbestätten, Museen und Schülerlabore an geowissenschaftlichen Forschungseinrichtungen sind von essenzieller Bedeutung für die Kommunikation geowissenschaftlicher Wissensbestände hinein in die Schulen und an die Öffentlichkeit. Das vorliegende Kapitel zeigt die Vielfalt der Angebote. An der Vermittlung interessierten Geowissenschaftlerinnen und Geowissenschaftlern können die Beschreibungen der Vermittlungsansätze als Anregung für eigene Projekte dienen. Lehrkräfte erhalten einen Überblick über außerschulische Lernorte, die sie mit ihren Lerngruppen aufsuchen können, und erfahren, was sie dort erwarten wird.
    Type: Book chapter , NonPeerReviewed
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  • 4
    Publication Date: 2017-02-07
    Description: Series of sensitivity tests were performed with a z-coordinate, global eddy-permitting (1/4°) ocean/sea-ice model (the ORCA-R025 model configuration developed for the DRAKKAR project) to carefully evaluate the impact of recent state-of-the-art numerical schemes on model solutions. The combination of an energy–enstrophy conserving (EEN) scheme for momentum advection with a partial step (PS) representation of the bottom topography yields significant improvements in the mean circulation. Well known biases in the representation of western boundary currents, such as in the Atlantic the detachment of the Gulf Stream, the path of the North Atlantic Current, the location of the Confluence, and the strength of the Zapiola Eddy in the south Atlantic, are partly corrected. Similar improvements are found in the Pacific, Indian, and Southern Oceans, and characteristics of the mean flow are generally much closer to observations. Comparisons with other state-of-the-art models show that the ORCA-R025 configuration generally performs better at similar resolution. In addition, the model solution is often comparable to solutions obtained at 1/6 or 1/10° resolution in some aspects concerning mean flow patterns and distribution of eddy kinetic energy. Although the reasons for these improvements are not analyzed in detail in this paper, evidence is shown that the combination of EEN with PS reduces numerical noise near the bottom, which is likely to affect current–topography interactions in a systematic way. We conclude that significant corrections of the mean biases presently seen in general circulation model solutions at eddy-permitting resolution can still be expected from the development of numerical methods, which represent an alternative to increasing resolution.
    Type: Article , PeerReviewed
    Format: text
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