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  • 1
    Publikationsdatum: 2021-03-29
    Beschreibung: Abstract: The range extension, phytosociology and ecology of Sphagnum riparium for the Arnsberger Wald, the largest forest area in North Rhine-Westphalia (Germany) are discussed in detail. The occurrence of Sphagnum riparium in the Arnsberger Wald seems to be the furthermost northwest exposed subarea in central Europe of this species. Major aspects are the distinct floristic structure primarely referring to communities of open fens and the specific habitat preferences illustrating a remarkable hydrological and micro-climatically stability. The analysis of the hydrochemical properties indicates poor nutrition conditions, but moderate base availabilities at the sites examined. In addition the endangerment of the Sphagnum riparium-rich habitats in the Arnsberger Wald is described.
    Beschreibung: Zusammenfassung: Sphagnum riparium besitzt im Arnsberger Wald einen regionalen Verbreitungsschwerpunkt, wobei es sich um das am weitesten nach Nordwesten exponierte Teilareal dieser Art in Mitteleuropa handelt. Das Torfmoos kommt v. a. in lichten, quellnahen Sumpf- und Moorwäldern in den höheren Lagen dieses Waldgebietes vor und hat hier unter Optimalbedingungen relativ ausgedehnte und vitale Be stände aufgebaut. Die hydrochemischen Messwerte belegen, dass sich die Standorte der überprüften Sphagnum riparium-reichen Phytozönosen im Arnsberger Wald durch eingeschränkte Nährstoffverfügbarkeiten, aber auch durch günstigere Basengehalte auszeichnen. Sie sind pflanzensoziologisch überwiegend den Niedermoor-Gesellschaften des Caricion nigrae anzuschließen und lassen sich in fünf floristisch und z. T. auch ökohydrologisch gut charakterisierbare Vegetationseinheiten gruppieren.
    Beschreibung: DFG, SUB Göttingen, DGMT
    Beschreibung: research
    Schlagwort(e): 553.21 ; Moor ; Sphagnum ; mire ; peatland ; vegetation ; Niedermoor ; fen ; FID-GEO-DE-7
    Sprache: Deutsch
    Materialart: article , publishedVersion
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    Publikationsdatum: 2022-05-26
    Beschreibung: Author Posting. © American Geophysical Union, 2014. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research: Oceans 119 (2014): 8818–8837, doi:10.1002/2014JC010191.
    Beschreibung: The outflowing currents from tidal inlets are influenced both by the morphology of the ebb-tide shoal and interaction with incident surface gravity waves. Likewise, the propagation and breaking of incident waves are affected by the morphology and the strength and structure of the outflowing current. The 3-D Coupled Ocean-Atmosphere-Wave-Sediment Transport (COAWST) modeling system is applied to numerically analyze the interaction between currents, waves, and bathymetry in idealized inlet configurations. The bathymetry is found to be a dominant controlling variable. In the absence of an ebb shoal and with weak wave forcing, a narrow outflow jet extends seaward with little lateral spreading. The presence of an ebb-tide shoal produces significant pressure gradients in the region of the outflow, resulting in enhanced lateral spreading of the jet. Incident waves cause lateral spreading and limit the seaward extent of the jet, due both to conversion of wave momentum flux and enhanced bottom friction. The interaction between the vorticity of the outflow jet and the wave stokes drift is also an important driving force for the lateral spreading of the plume. For weak outflows, the outflow jet is actually enhanced by strong waves when there is a channel across the bar, due to the “return current” effect. For both strong and weak outflows, waves increase the alongshore transport in both directions from the inlet due to the wave-induced setup over the ebb shoal. Wave breaking is more influenced by the topography of the ebb shoal than by wave-current interaction, although strong outflows show intensified breaking at the head of the main channel.
    Beschreibung: We are grateful to the Career Training Interexchange program that facilitated the training period of Maitane Olabarrieta within the USGS. Maitane Olabarrieta also acknowledges funding from the “Cantabria Campus International Augusto Gonzalez Linares Program.”WRG was supported by ONR grant N00014-13-1–0368.
    Beschreibung: 2015-06-23
    Schlagwort(e): Wave-current interaction ; Tidal inlets ; Nearshore ; Hydrodynamics ; Plane jet ; Vortex force method ; Rip current ; COAWST modeling system
    Repository-Name: Woods Hole Open Access Server
    Materialart: Article
    Format: application/pdf
    Standort Signatur Erwartet Verfügbarkeit
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