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首页> 外文期刊>Advances in Water Resources >Water storage changes and climate variability within the Nile Basin between 2002 and 2011
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Water storage changes and climate variability within the Nile Basin between 2002 and 2011

机译:尼罗河流域2002年至2011年之间的储水量变化和气候多变性

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摘要

Understanding water storage changes within the Nile's main sub-basins and the related impacts of climate variability is an essential step in managing its water resources. The Gravity Recovery And Climate Experiment (GRACE) satellite mission provides a unique opportunity to monitor changes in total water storage (TWS) of large river basins such as the Nile. Use of GRACE-TWS changes for monitoring the Nile is, however, difficult since stronger TWS signals over the Lake Victoria Basin (LVB) and the Red Sea obscure those from smaller sub-basins making their analysis difficult to undertake. To mitigate this problem, this study employed Independent Component Analysis (ICA) to extract statistically independent TWS patterns over the sub-basins from GRACE and the Global Land Data Assimilation System (GLDAS) model. Monthly precipitation from the Tropical Rainfall Measuring Mission (TRMM) over the entire Nile Basin are also analysed by ICA. Such extraction enables an in-depth analysis of water storage changes within each sub-basin and provides a tool for assessing the influence of anthropogenic as well as climate variability caused by large scale ocean-atmosphere interactions such as the El Nino Southern Oscillation (ENSO) and the Indian Ocean Dipole (IOD). Our results indicate that LVB experienced effects of both anthropogenic and climate variability (i.e., a correlation of 0.56 between TWS changes and IOD at 95% confidence level) during the study period 2002-2011, with a sharp drop in rainfall between November and December 2010, the lowest during the entire study period, and coinciding with the drought that affected the Greater Horn of Africa. Ethiopian Highlands (EH) generally exhibited a declining trend in the annual rainfall over the study period, which worsened during 2007-2010, possibly contributing to the 2011 drought over GHA. A correlation of 0.56 was found between ENSO and TWS changes over EH indicating ENSO's dominant influence. TWS changes over Bar-el-Ghazal experienced mixed increase-decrease, with ENSO being the dominant climate variability in the region during the study period. A remarkable signal is noticed over the Lake Nasser region indicating the possibility of the region losing water not only through evaporation, but also possibly through over extraction from wells in the Western Plateau (Nubian aquifer).
机译:了解尼罗河主要流域内的储水变化以及气候变化的相关影响,是管理其水资源的重要步骤。重力恢复和气候实验(GRACE)卫星任务提供了一个独特的机会来监视尼罗河等大型流域的总蓄水量(TWS)的变化。但是,使用GRACE-TWS变化来监视尼罗河是困难的,因为维多利亚湖盆地(LVB)和红海的更强的TWS信号遮盖了较小盆地的信号,因此难以进行分析。为了缓解这个问题,本研究采用独立分量分析(ICA)从GRACE和全球土地数据同化系统(GLDAS)模型的子流域提取统计独立的TWS模式。 ICA还分析了整个尼罗河流域的热带降雨测量团(TRMM)的月降水量。这种提取能够对每个流域内的储水变化进行深入分析,并提供一种工具来评估人为影响以及由大规模海洋-大气相互作用(如厄尔尼诺南方涛动(ENSO))引起的气候变异性和印度洋偶极子(IOD)。我们的结果表明,在2002-2011年的研究期间,LVB经历了人为和气候变异的影响(即在95%置信水平下,TWS变化与IOD之间的相关性为0.56),并且在2010年11月至2010年12月期间降雨急剧下降,是整个研究期间的最低水平,并且与影响非洲大角地区的​​干旱相吻合。埃塞俄比亚高地(EH)在研究期内的年降雨量总体呈下降趋势,在2007-2010年间恶化,可能导致2011年GHA干旱。在ENSO和TWS随EH的变化之间的相关系数为0.56,表明ENSO占主导地位。研究期间,Bar-el-Ghazal的TWS变化经历了混合的上升-下降,而ENSO是该地区主要的气候变化。在纳赛尔湖地区发现了一个明显的信号,表明该地区不仅可能因蒸发而失水,而且还可能由于从西部高原(努比亚含水层)的井中过度开采而失水。

著录项

  • 来源
    《Advances in Water Resources 》 |2014年第11期| 1-15| 共15页
  • 作者单位

    Western Australian Centre for Geodesy and The Institute for Geoscience Research, Curtin University, Perth, Australia,Geodetic Institute, Karlsruhe Institute of Technology, Karlsruhe, Germany;

    Institute of Geodesy and Geoinformation, Bonn University, Nussallee 17, D53115, Bonn, NRW, Germany;

    Western Australian Centre for Geodesy and The Institute for Geoscience Research, Curtin University, Perth, Australia;

    Institute of Geodesy and Geoinformation, Bonn University, Bonn, Germany;

    Geodetic Institute, Karlsruhe Institute of Technology, Karlsruhe, Germany;

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

    Nile Basin; Lake Victoria; Ethiopian Highlands; Bar-El-Ghazal; GRACE-total water storage; Climate variability;

    机译:尼罗河盆地;维多利亚湖;埃塞俄比亚高地;Bar-El-Ghazal;GRACE-总储水量;气候变率;

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