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首页> 外文期刊>Journal of South American earth sciences >Seasonal patterns of rainfall and river isotopic chemistry in northern Amazonia (Guyana): From the headwater to the regional scale
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Seasonal patterns of rainfall and river isotopic chemistry in northern Amazonia (Guyana): From the headwater to the regional scale

机译:亚马逊北部(圭亚那)降雨和河流同位素化学的季节性模式:从源头到区域范围

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摘要

We use first field-based observations of precipitation and river isotopic chemistry from a three-year study (2009-2011) in rainforest and nearby savannah in central Guyana at the northern rim of the Amazon rainforest to establish the quality of modelled or remotely-sensed datasets. Our 3 years of data capture a reduced rainfall regime in 2009 and an extended wet season in 2010, in contrast to the widely documented Amazonian floods in 2009 and droughts in 2010. Comparisons of observed precipitation with satellite derived TRMM and ECMWF ERA-Interim reanalysis precipitation show that both of these data sets capture the general pattern of seasonality, but substantially underestimate rainfall amounts in the primary wet season (by up to 50% and 72% respectively). The TRMM dataset is generally better at characterising the main dry season from September to December but the ERA-lnterim model can overestimate precipitation in the dry season by up to 175%. Our new data on isotopic chemistry of river waters show that δ~2H/δ~(18)O values in this region are broadly consistent with interpolated global datasets of modelled precipitation isotopic signatures. The dominance of isotopically lighter water derived from the rains of the ITCZ during the wet season provides evidence of the close coupling of water chemistry of headwater rivers on the northern rim of Amazonia to the positioning of the ITCZ over the region. Our results highlight the challenge in understanding and representing local scale hydrological and biogeo-chemical characteristics using regional scale model data. We argue that combining point and local scale field data with larger scale model data is necessary to progress towards a comprehensive understanding of climate-hydrology interactions in Amazonia.
机译:我们使用一项为期三年的研究(2009-2011年)对亚马逊雨林北部边缘的圭亚那中部的雨林和附近的热带稀树草原进行了基于降水和河流同位素化学的首次野外观测,以建立模拟或遥感的质量数据集。与广泛报道的2009年的亚马逊洪水和2010年的干旱相比,我们3年的数据记录了2009年的降雨情况减少和2010年的潮湿季节延长。与卫星衍生的TRMM和ECMWF ERA-中期再分析降水的观测降水比较结果表明,这两个数据集都反映了季节性的一般模式,但大大低估了主要雨季的降雨量(分别高达50%和72%)。 TRMM数据集通常可以更好地描述9月至12月的主要旱季,但ERA-Interim模型可以高估干旱季的降水量达175%。我们关于河流水同位素化学的新数据表明,该区域的δ〜2H /δ〜(18)O值与模拟降水同位素特征的内插全球数据集大致一致。来自ITCZ在雨季的降雨的同位素较轻的水占优势,这提供了亚马孙州北缘上游水源河的水化学与该地区ITCZ位置紧密联系的证据。我们的结果凸显了使用区域尺度模型数据来理解和表示局部尺度的水文和生物地球化学特征所面临的挑战。我们认为将点和局部尺度的野外数据与更大尺度的模型数据相结合对于全面了解亚马逊地区的气候-水文相互作用是必要的。

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  • 来源
    《Journal of South American earth sciences 》 |2014年第7期| 108-118| 共11页
  • 作者单位

    School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK;

    Iwokrama International Centre for Rainforest Conservation and Development, Guyana,School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK;

    School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK;

    School of Environmental Sciences, University of East Anglia, Norwich, UK;

    School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK;

    School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate; Guyana; Iwokrama; Hydrology; TRMM; ERA-lnterim;

    机译:气候;圭亚那;岩冈水文学;TRMM;时代;

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