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  • 1
    UID:
    edochu_18452_27661
    Format: 1 Online-Ressource (17 Seiten)
    ISSN: 1437-3254 , 1437-3254
    Content: Supraglacial deposits of tephra or volcaniclastics have the potential to cause significant anomalies of glacier ablation and runoff. The intensity of these anomalies is governed by the thermal resistivity of the covering layer and hence the thermal conductivity of the deposited grains. This study concentrates on causal and quantitative relationships between density, geochemical composition and thermal conductivity of volcanic materials based on the analysis of 43 samples from locations across Iceland. Thermal conductivity is primarily influenced by density, whereas geochemical composition has been proved to be of subsidiary importance. Four different multiple regression models were calibrated that calculate the grain thermal conductivity of a volcanic material based on rock properties and geochemical composition. In a subsequent step, the bulk thermal conductivity of the respective deposit is calculated as a function of porosity and degree of water saturation. Examples using volcanic material from the Eyjafjallajökull 2010 and Grímsvötn 2011 eruptions confirm that the presented calculation scheme can be executed using only limited geochemical data as input. This facilitates an easy application of the modeling scheme immediately after a volcanic eruption.
    Content: Peer Reviewed
    In: Heidelberg : Springer, 109,2, Seiten 569-585, 1437-3254
    Language: English
    URL: Volltext  (kostenfrei)
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  • 2
    UID:
    edochu_18452_18830
    Format: 1 Online-Ressource (11 Seiten)
    ISSN: 0022-1430 , 0022-1430
    Content: Supraglacial deposits are known for their influence on glacier ablation. The magnitude of this influence depends on the thickness and the type of the deposited material. The effects of thin layers of atmospheric black carbon and of thick moraine debris have been intensively studied. Studies related to regional-scale deposits of volcanic tephra with thicknesses varying between millimetres and metres and thus over several orders of magnitude are scarce. We present results of a field experiment in which we investigated the influence of supraglacial deposits of tephra from Grímsvötn volcano on bare-ice ablation at Svínafelsjökull, Iceland. We observed that the effective thickness at which ablation is maximized ranges from 1.0 to 2.0 mm. At ∼10 mm a critical thickness is reached where sub-tephra ablation equals bare-ice ablation. We calibrated two empirical ablation models and a semi-physics-based ablation model that all account for varying tephra-layer thicknesses. A comparison of the three models indicates that for tephra deposits in the lower-millimetre scale the temperature/radiation-index model performs best, but that a semi-physics-based approach could be expected to yield superior results for tephra deposits of the order of decimetres.
    Content: Peer Reviewed
    Note: Die Zweitveröffentlichung der Publikation wurde durch Studierende des Projektseminars "Open Access Publizieren an der HU" im Sommersemester 2017 betreut. Nachgenutzt gemäß den CC-Bestimmungen des Lizenzgebers bzw. einer im Dokument selbst enthaltenen CC-Lizenz.
    In: : International Glaciological Society, 62,235, 0022-1430
    Language: English
    URL: Volltext  (kostenfrei)
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  • 3
    UID:
    gbv_1696852609
    Format: Illustrationen, Diagramme, Karten
    ISSN: 1879-0704
    In: Remote sensing of environment, Amsterdam [u.a.] : Elsevier Science, 1969, 233(2019) Artikel-Nummer 111396, 1879-0704
    In: volume:233
    In: year:2019
    Language: English
    Author information: Kukla, Peter 1959-
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