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ExtremA 2019 - Aktueller Wissensstand zu Extremereignissen alpiner Naturgefahren in Österreich
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© 2020, Vandenhoeck & Ruprecht GmbH & Co. KG, Göttingen ISBN Print: 9783847110927 – ISBN E-Lib: 9783737010924 Feser, F., Barcikowska,M.,Krueger,O., Schenk, F.,Weisse,R.,Xia, L., 2015. Storminess over theNorthAtlantic andnorthwesternEurope–areview.Quarterly Journalof the RoyalMeteorological Society, 141, S. 350–382.DOI: 10.1002/qj.2364. Fischer-Bruns, I., Storch, H. von, Gonz#lez-Rouco, J.F., Zorita, E., 2005.Modelling the variability ofmidlatitude storm activity on decadal to century time scales. Climate Dynamics, 25, S. 461–476.DOI: 10.1007/s00382-005-0036-1. Hall,N.M.,Hoskins,B.J.,Valdes,P.J.,Senior,C.A.,1994.Stormtracksinahigh-resolution GCMwith doubled carbon dioxide. Quarterly Journal of the Royal Meteorological Society, 120, S. 1209–1230. Hammerl,C. (Hrsg.), 2001.DieZentralanstalt fürMeteorologie undGeodynamik1851– 2001, 150 JahreMeteorologieundGeophysik inÖsterreich.Leykam,Graz, 838S. Jones, P., 1995. The Instrumental Data Record: Its Accuracy and Use in Attempts to Identify the»CO2Signal«. In:H. vonStorch,A.Navarra (Hrsg.),Analysis ofClimate Variability. SpringerBerlin/Heidelberg,Berlin/Heidelberg, S. 53–75. Kaltenböck,R.,Diendorfer,G.,Dotzek,N.,2009.Evaluationofthunderstormindicesfrom ECMWF analyses, lightning data and severe storm reports. Atmospheric Research, 93(1), S. 381–396.DOI: 10.1016/j.atmosres.2008.11.005. Kaltenböck,R.,Steinheimer,M.,2015.Radar-basedseverestormclimatologyforaustrian complex orography related to vertical wind shear and atmospheric instability. At- mosphericResearchm,158, S. 216–230.DOI: 10.1016/j.atmosres.2014.08.006. Karl,T.R.,Quayle,R.G.,Groisman,P.Y., 1993.DetectingClimateVariationsandChange: NewChallengesforObservingandDataManagementSystems.JournalofClimate,6(8), S. 1481–1494.DOI: 10.1175/1520-0442(1993)006<1481:DCVACN>2.0.CO;2. Karremann, M.K., Pinto, J.G., Reyers, M., Klawa, M., 2014. Return periods of losses associated with European windstorm series in a changing climate. Environmental ResearchLetters, 9(12), S. 124016. Katz,R.W.,Brown,B.G., 1992.Extremeevents inachangingclimate:Variability ismore important thanaverages.ClimaticChange, 21(3), S. 289–302.DOI: 10.1007/BF001397 28. Knippertz, P., Ulbrich, U., Speth, P., 2000. Changing cyclones and surfacewind speeds over theNorthAtlanticandEurope inatransientGHGexperiment.ClimateResearch, 15, S. 109–122. Krüger, O., Feser, F., Weisse, R., 2019. Northeast Atlanti Storm Activitiy and its Un- certainty fromlate19th to the21stCentury. Journal ofClimate, 32, S. 1919–1931. Lambert, S.J., 1995. The effect of enhanced greenhousewarmingonwinter cyclone fre- quencies and strengths. Journal of Climate, 8, S. 1447–1452. DOI: 10.1175/1520- 0442(1995)008<1447:TEOEGW>2.0.CO;2. Lambert, S.J., Sheng, J., Boyle, J., 2002.Winter cyclone frequencies in thirteenmodels participating in the atmospheric model intercomparison project (AMIP1). Climate Dynamics, 19, S. 1–16.DOI: 10.1007/s00382-001-0206-8. Leckebusch, G.C., Koffi, B., Ulbrich, U., Pinto, J.G., Spangehl, T., Zacharias, S., 2006. Analysis of frequency and intensity of europeanwinter storm events from amulti- model perspective, at synoptic and regional scales. Climate Research, 31, S. 59–74. Leckebusch,G.C.,Ulbrich,U., 2004.On the relationshipbetween cyclones and extreme windstormeventsovereuropeunderclimatechange.GlobalPlanetChange,44,S. 181– 193. Stürme138 Open-Access-Publikation im Sinne der CC-Lizenz BY-NC-ND 4.0
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ExtremA 2019 Aktueller Wissensstand zu Extremereignissen alpiner Naturgefahren in Österreich
Title
ExtremA 2019
Subtitle
Aktueller Wissensstand zu Extremereignissen alpiner Naturgefahren in Österreich
Authors
Thomas Glade
Martin Mergili
Editor
Katrin Sattler
Publisher
Vandenhoeck & Ruprecht GmbH & Co
Date
2020
Language
German
License
CC BY-NC-ND 4.0
ISBN
978-3-7370-1092-4
Size
15.5 x 23.2 cm
Pages
778
Category
Geographie, Land und Leute
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