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  • 2010-2014  (2,836)
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  • 1
    Publication Date: 2014-03-14
    Print ISSN: 0941-2948
    Electronic ISSN: 1610-1227
    Topics: Geography , Physics
    Published by Schweizerbart
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  • 2
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    COPERNICUS
    In:  EPIC3EGU General Assembly 2013, Vienna, Austria, 2013-04-07-2013-04-12Geophysical Research Abstracts Vol. 15, EGU2013-12930, 2013, COPERNICUS
    Publication Date: 2019-12-03
    Description: Monthly time series of temperature, wind speed and sea level pressure recorded at Neumayer polar research station (70°39'S, 8°15'W) during the last 30 years are analysed in order to identify the climate oscillations and associated teleconnection patterns at time scales from half-year to decades. Oscillations with periods of six months (semi-annual) and one year (annual) were identified in all records. Both annual and semi-annual oscillations are non-stationary in time. The dominant pattern of interannual to decadal variability, which captures the out of phase variations of temperature and wind speed with sea level pressure, shows a persistent 2-3 years oscillation. This oscillation is related with a wave-train atmospheric circulation pattern similar to the Pacific South American (PSA) modes. This suggests a tropical origin of this oscillation. The second pattern of interannual to decadal variability, which captures in-phase variations of these variables, shows enhanced variability at 5-6 year time scales. This oscillation is induced by the Antarctic Oscillation (AAO) which shows enhanced variability at these time scales. Analysis of the variability of high resolution stable isotope time series from four ice cores from Neumayer region reveals similar oscillations. This suggests that ice core data from the region could be used to reconstruct the phase and amplitude of atmospheric circulation patterns associated to these oscillations during past periods.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 3
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    WMO, ICSU
    In:  EPIC3World Weather Open Science Conference 2014, Montreal, 2014-08-16-2014-08-21Montreal, WMO, ICSU
    Publication Date: 2014-10-16
    Description: Both, the analysis of polar climate change on the basis of observations and the validation of weather and climate prediction in polar regions are challenging since only few observations are available. In the inner arctic regions in-situ observations are available only from buoys, ship cruises and aircraft campaigns with large temporal differences and spatial separations. In the present contribution we compare near-surface meteorological observations and rawinsonde soundings from Arctic cruises with the German icebreaker RV Polarstern during August 1996, 2001, and 2007 with each other and with ERA-Interim reanalyses. Although the used observations are usually applied in the reanalysis, they differ considerably from ERA data. ERA overestimates the relative humidity and temperature in the atmospheric boundary layer and the base height of the capping inversion. Warm biases of ERA near-surface temperatures amount up to 2K. The melting point of snow is the most frequent near-surface temperature in ERA, while the observed value is the sea water freezing temperature. While this points to general drawbacks in the models, it shows also that the quantification of trends based on reanalyses is problematic especially when only one reanalysis is considered.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
    Format: application/pdf
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  • 4
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    In:  EPIC313 th BSRN Scientific Review and Workshop, Bologna, Italy, 2014-09-09-2014-09-12
    Publication Date: 2019-12-03
    Description: Since July 2008, the World Radiation Monitoring Center (WRMC) is hosted at the Alfred Wegener Institute (AWI) of Polar and Marine Research at Bremerhaven, Germany (see http://www.bsrn.awi.de). In mid 2014, 58 BSRN stations submitted their data to the WRMC. The data import is organized in so-called “station-to-archive files” which contain all the data from one station collected during one month. There have been a total of 7825 station-month data sets from 58 stations collected in the WRMC in September 2014. All submitted station-to-archive files are read-accessible from any user who accepts the BSRN data release guidelines (see http://www.bsrn.awi.de/en/data/conditions_of_data_release/). The files can be obtained via ftp://ftp.bsrn.awi.de/ by using a web browser or any ftp tool. The access to the public file archive is password-restricted. Read accounts can be obtained from the WRMC (email Gert.Koenig-Langlo@awi.de). An alternative to the ftp access is a data access via the Publishing Network for Geoscientific and Environmental Data, PANGAEA (see http://www.pangaea.de/) which offers much more user-friendly services. Since December 2011 the WRMC also checks the quality of all incoming data. The station scientists are recommended to test their data prior to submission using e.g. the BSRN-Toolbox (http://wiki.pangaea.de/wiki/BSRN_Toolbox). An updated Technical Plan for BSRN Data Management is now available via the BSRN webpage or www.wmo.int/pages/prog/gcos/Publications/gcos-174.pdf. The BSRN measurements at Neumayer are ongoing. They are part of a much bigger observatory program which includes synoptic observations, upper air soundings, ozone soundings, and surface air chemistry measurements. Radiation data from an automatic weather station (AWS) which run one year directly besides the BSRN measurements were analyzed to quantify typical errors of unmanned systems in Antarctica.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 5
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    PANGAEA
    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2014-06-19
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 6
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    CAMBRIDGE UNIV PRESS
    In:  EPIC3Antarctic Science, CAMBRIDGE UNIV PRESS, 26(2), pp. 193-204, ISSN: 0954-1020
    Publication Date: 2019-12-03
    Description: High temporal resolution (three hours) records of temperature, wind speed and sea level pressure recorded at Antarctic research station Neumayer (708S, 88W) during 1982–2011 are analysed to identify oscillations from daily to intraseasonal timescales. The diurnal cycle dominates the three-hourly time series of temperature during the Antarctic summer and is almost absent during winter. In contrast, the three-hourly time series of wind speed and sea level pressure show a weak diurnal cycle. The dominant pattern of the intraseasonal variability of these quantities, which captures the out-of-phase variation of temperature and wind speed with sea level pressure, shows enhanced variability at timescales of , 40 days and , 80 days, respectively. Correlation and composite analysis reveal that these oscillations may be related to tropical intraseasonal oscillations via large-scale eastward propagating atmospheric circulation wave-trains. The second pattern of intraseasonal variability, which captures in-phase variations of temperature, wind and sea level pressure, shows enhanced variability at timescales of , 35, , 60 and , 120 days. These oscillations are attributed to the Southern Annular Mode/Antarctic Oscillation (SAM/AAO) which shows enhanced variability at these timescales. We argue that intraseasonal oscillations of tropical climate and SAM/AAO are related to distinct patterns of climate variables measured at Neumayer.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 7
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    Copernicus Publications
    In:  EPIC3Earth System Science Data, Copernicus Publications, 5, pp. 155-163, ISSN: 1866-3508
    Publication Date: 2015-03-20
    Description: A consistent meteorological dataset of the Arctic site Ny-Ålesund (11.9°E, 78.9°N) spanning the 18-year-period 1 August 1993 to 31 July 2011 is presented. Instrumentation and data handling of temperature, humidity, wind and pressure measurements are described in detail. Monthly mean values are shown for all years to illustrate the interannual variability of the different parameter. Climatological mean values are given for temperature, humidity and pressure. From the climatological dataset, we also present the time series of annual mean temperature and humidity, revealing a temperature increase of +1.35 K per decade and an increase in water vapor mixing ratio of +0.22 g/kg per decade for the given time period, respectively. With the continuation of the presented measurements, the Ny-Ålesund high resolution time series will provide a reliable source to monitor Arctic change and retrieve trends in the future. The relevant data are provided in high temporal resolution as averages over 5 [1] minutes before [after] 14 July 1998, respectively, placed on the PANGAEA repository (doi:10.1594/PANGAEA.793046). While 6-hourly synoptic observations in Ny-Ålesund by the Norwegian Meteorological Institute reach back to 1974 (Førland et al., 2011), the meteorological data presented here cover a shorter time period, but their high temporal resolution will be of value for atmospheric process studies on shorter time scales.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 8
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    In:  EPIC3Jahresfeier der Naturwissenschaftlich-Technischen Fakultät Siegen, Apollo Theater Siegen, 2013-04-12-2013-04-12
    Publication Date: 2019-12-03
    Description: Ein Reisebericht aus der Antarktis für Wissenschaftler, Techniker und Menschen mit Fernweh
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 9
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    In:  EPIC3DataCite Summer Meeting 2010 http://www.tib-hannover.de/fileadmin/datacite-summer-programme.html Monday, 7. June 2010 to Tuesday, 8. June 2010, German National Library of Science and Technology TIB, Hannover.
    Publication Date: 2019-12-03
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 10
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    In:  EPIC3Joint Environment Canada and WMO Expert Team World Data Centre (ET-WDC) Managers Meeting 12-14 May 2010, Toronto Canada, http://www.woudc.org/meetings/ET-WDC2010.html.
    Publication Date: 2019-12-03
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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