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Temporal and spatial responses of river discharge to tectonic and climatic perturbations: Choshui River, Taiwan, and Typhoon Mindulle (2004)

机译:河流排放到构造与气候扰动的时间和空间响应:Choshui River,Taiwan和Typhoon Mindulelle(2004)

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One reason that small mountainous rivers discharge disproportionately large quantities of sediment to the coastal ocean is because they are particularly susceptible to short-term episodic events, such as earthquakes and floods. The impact of such events, both temporally and spatially, however, has seldom been monitored. Here we report on the results of probably the most thorough monitoring of a flood ever undertaken: the effect of Typhoon Mindulle (2-4 July 2004) on the character of the water transported by the Choshui River, central western Taiwan, during which 74 million tons of sediment were discharged to the adjacent Taiwan Strait. Results from a series of 113 water samples obtained between 2nd and 4th July from five stations along the middle and lower reaches the river indicate that more than half of the suspended sediment was generated in nearby mountains before the river reached its flood plain. While the concentration of dissolved solids remained more or less constant along the mainstem of the river, the composition changed considerably, reflecting the imprints of local geology. An order-of-magnitude downstream increase in NO_3-concentrations reflects the rapid draining of the Tsaoling landslide lake on the Chingshui River, as the 1999 earthquake-generated landslide dam was breached.
机译:其中一个原因是山区小河流排放不成比例的大量泥沙的沿海海洋是因为他们特别容易受到短期的偶发事件,如地震和洪水。这样的事件,在时间和空间的影响,但是,却鲜有监控。在这里,我们有史以来进行的可能是洪水的最彻底的监测结果报告:由浊水溪,西部中央台运水的性质台风蒲公英(2004年7月2日至4日)的影响,在此期间,7400万吨泥沙放电到邻近的台湾海峡。从一系列的沿中下游河五个站第2和7月4日之间获得113水样结果表明:在附近的山上产生,一半以上泥沙的河水之前达到了泽国。而溶解的固体的浓度保持或多或少沿河的主干常数,该组合物显着地改变,反映当地的地质的印记。在NO_3-浓度的订单数量级增加下游反映了清水溪的草岭堰塞湖的快速消耗,如1999年的大地震产生的滑坡坝被攻破。

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