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    Online Resource
    Online Resource
    Environmental and Engineering Geophysical Society ; 2016
    In:  Journal of Environmental and Engineering Geophysics Vol. 21, No. 1 ( 2016-03), p. 37-42
    In: Journal of Environmental and Engineering Geophysics, Environmental and Engineering Geophysical Society, Vol. 21, No. 1 ( 2016-03), p. 37-42
    Abstract: Select coastal regions of the North Slope of Alaska are experiencing high erosion rates that can be attributed in part to recent warming trends and associated increased storm intensity and frequency. The upper sediment column of the coastal North Slope of Alaska can be described as continuous permafrost underlying a thin (typically less than 1–2 m) active layer that responds variably to seasonal thaw cycles. Assessing the temporal and spatial variability of the active layer and underlying permafrost is essential to better constrain how heightened erosion may impact material fluxes to the atmosphere and the coastal ocean, and how enhanced thaw cycles may impact the stability of the coastal bluffs. In this study, multi-channel electrical resistivity tomography (ERT) was used to image shallow subsurface features of a coastal bluff west of Kaktovik, on Barter Island, northeast Alaska. A comparison of a suite of paired resistivity surveys conducted in early and late summer 2014 provided detailed information on how the active layer and permafrost are impacted during the short Arctic summer. Such results are useful in the development of coastal resilience models that tie together fluvial, terrestrial, climatic, geologic, and oceanographic forcings on shoreline stability.
    Type of Medium: Online Resource
    ISSN: 1083-1363 , 1943-2658
    Language: English
    Publisher: Environmental and Engineering Geophysical Society
    Publication Date: 2016
    detail.hit.zdb_id: 2252108-2
    SSG: 16,12
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