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首页> 外文期刊>Climate of the past >Investigating late Holocene variations in hydroclimate and the stable isotope composition of precipitation using southern South American peatlands: an hypothesis
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Investigating late Holocene variations in hydroclimate and the stable isotope composition of precipitation using southern South American peatlands: an hypothesis

机译:使用南美南部泥炭地调查晚全新世的水文气候变化和稳定的同位素同位素组成:一个假设

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摘要

Ombrotrophic raised peatlands provide an ideal archive for integrating late Holocene records of variations in hydroclimate and the estimated stable isotope composition of precipitation with recent instrumental measurements. Modern measurements of mean monthly surface air temperature, precipitation, and δD and δ~(18)O-values in precipitation from the late twentieth and early twenty-first centuries provide a short but invaluable record with which to investigate modern relationships between these variables, thereby enabling improved interpretation of the peatland palaeodata. Stable isotope data from two stations in the Global Network for Isotopes in Precipitation (GNIP) from southern South America (Punta Arenas, Chile and Ushuaia, Argentina) were analysed for the period 1982 to 2008 and compared with longer-term meteorological data from the same locations (1890 to present and 1931 to present, respectively). δD and δ~(18)O-values in precipitation have exhibited quite different trends in response to local surface air temperature and precipitation amount. At Punta Arenas, there has been a marked increase in the seasonal difference between summer and winter δ~(18)O-values. A decline in the deuterium excess of summer precipitation at this station was associated with a general increase in relative humidity at 1000 mb over the surface of the Southeast Pacific Ocean, believed to be the major vapour source for the local precipitation. At Ushuaia, a fall in δ~(18)O-values was associated with an increase in the mean annual amount of precipitation. Both records are consistent with a southward retraction and increase in zonal wind speed of the austral westerly wind belt. These regional differences, observed in response to a known driver, should be detectable in peat- land sites close to the GNIP stations. Currently, insufficient data with suitable temporal resolution are available to test for these regional differences over the last 3000 yr. Existing peat- land palaeoclimate data from two sites near Ushuaia, however, provide evidence for changes in the late Holocene that are consistent with the pattern observed in modern observations.
机译:胚养的泥炭地提供了一个理想的档案库,可用于将全新世晚期的水气候变化记录和估计的稳定同位素组成与最近的仪器测量相结合。现代的平均月平均气温,降水量以及20世纪末至21世纪初的降水中δD和δ〜(18)O值的测量提供了简短但无价的记录,可用于调查这些变量之间的现代关系,从而可以更好地解释泥炭地古数据。分析了来自南美南部(智利蓬塔阿雷纳斯和阿根廷乌斯怀亚)全球降水同位素网络(GNIP)中两个站点的稳定同位素数据,并将其与1982年至2008年期间的长期气象数据进行了比较。位置(分别是1890年和1931年)。降水中的δD和δ〜(18)O值对局部地表气温和降水量的响应呈现出完全不同的趋势。在蓬塔阿雷纳斯,夏季和冬季的δ〜(18)O值之间的季节差异显着增加。该站夏季降水氘过量的减少与东南太平洋表面1000 mb的相对湿度普遍增加有关,据信这是当地降水的主要蒸气源。在乌斯怀亚,δ〜(18)O值的下降与年平均降水量的增加有关。两项记录均与南风退缩和南风西风带的纬向风速增加一致。在对已知驾驶员的响应中观察到的这些区域差异应该在靠近GNIP站的泥炭地站点中可以检测到。当前,没有足够的具有适当时间分辨率的数据来测试过去3000年中的这些区域差异。然而,来自乌斯怀亚附近两个地点的泥炭地古气候数据提供了晚全新世变化的证据,这些变化与现代观测中观察到的模式一致。

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  • 来源
    《Climate of the past》 |2012年第5期|1457-1471|共15页
  • 作者单位

    School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK;

    School of Geosciences, University of Aberdeen, Elphinstone Road, Aberdeen, AB24 3UF, UK;

    Centre for Environmental Change and Quaternary Research, School of Natural and Social Sciences, Francis Close Hall, University of Gloucestershire, Cheltenham, GL50 4AZ, UK;

    Department of Geography, College of Science, Swansea University, Swansea, SA2 8PP, UK;

    School of Geography and the Environment, University of Southampton, Southampton, SO17 1BJ, UK;

    Department of Geography, College of Science, Swansea University, Swansea, SA2 8PP, UK;

    School of Geography and the Environment, University of Southampton, Southampton, SO17 1BJ, UK;

    School of Geosciences, University of Aberdeen, Elphinstone Road, Aberdeen, AB24 3UF, UK;

    School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK;

    School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK;

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