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首页> 外文期刊>Journal of geographical sciences >Streamflow trends and hydrological response to climatic change in Tarim headwater basin
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Streamflow trends and hydrological response to climatic change in Tarim headwater basin

机译:塔里木河流域径流趋势及对气候变化的水文响应。

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This paper has studied the change of streamflow and the impact of climatic variability conditions on regional hydrological cycle in the headwater of the Tarim River Basin. This study investigates possible causes of observed trends in streamflow in an environment which is highly variable in terms of atmospheric conditions, and where snow and ice melt play an important role in the natural hydrological regime. The discharge trends of three head streams have a significant increase trend from 1957 to 2002 with the Mann-Kendall test. Complex time-frequency distributions in the streamflow regime are demonstrated especially by Morlet wavelet analysis over 40 years. The purpose is to ascertain the nature of climatic factors spatial and temporal distribution, involved the use of EOF (Empirical Orthogonal Function) to compare the dominant temperature, precipitation and evaporation patterns from normally climatic records over the Tarim's headwater basin. It shows that the first principal component was dominated since the 1990s for temperature and precipitation, which identifies the significant ascending trend of spatial and temporal pattern characteristics under the condition of the global warming. An exponential correlation is highlighted between surface air temperature and mean river discharge monthly, so the regional runoff increases by 10%-16% when surface air temperature rises by 1℃. Results suggest that headwater basins are the most vulnerable environments from the point of view of climate change, because their watershed properties promote runoff feeding by glacier and snow melt water and their fundamental vulnerability to temperature changes affects rainfall, snowfall, and glacier and ice melt.
机译:本文研究了塔里木河流域上游水流的变化以及气候变化条件对区域水文循环的影响。这项研究调查了在大气条件变化很大的环境中观察到的水流趋势的可能原因,在该环境中,冰雪融化在自然水文状况中起着重要作用。通过Mann-Kendall试验,从1957年到2002年,三股水流的排放趋势有明显的增加趋势。尤其是通过40年的Morlet小波分析,证明了流态中复杂的时频分布。目的是确定气候因素时空分布的性质,其中涉及使用EOF(经验正交函数)来比较塔里木源水盆地正常气候记录的主要温度,降水和蒸发模式。它表明,自1990年代以来,温度和降水是第一个主要成分,这确定了全球变暖条件下时空格局特征的显着上升趋势。地表气温与月平均河流量之间呈指数关系,因此当地表气温升高1℃时,区域径流量增加10%-16%。结果表明,从气候变化的角度来看,源头盆地是最脆弱的环境,因为它们的分水岭特性促进了冰川和融雪水的径流补给,并且它们对温度变化的基本脆弱性影响了降雨,降雪以及冰川和冰融化。

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