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Fluctuation of the Water Environmental Carrying Capacity in a Huge River-Connected Lake

机译:巨大内河湖泊水环境承载力的波动

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摘要

A new method, with the non-fully mixed coefficient (NFMC) considered, was put forward to calculate the water environmental carrying capacity (WECC) for huge river-connected lakes, of which the hydrological conditions always vary widely during a year. Poyang Lake, the most typical river-connected lake and the largest freshwater lake in China, was selected as the research area. Based on field investigations and numerical simulation, the monthly pollutant degradation coefficients and non-fully mixed coefficients of different lake regions were determined to explore the WECCs of COD, TN and TP of Poyang Lake in a common water year. It was found that under the hydrological conditions of a common water year the total WECCs of COD, TN and TP in the lake were respectively 181.9 × 104 t, 33.3 × 104 t and 1.86 × 104 t. Due to the varied lake water volume and self-purification ability, an evident temporal fluctuation of WECCs in Poyang Lake was observed. The dry seasons were characterized by a higher NFMCs but lower WECCs owing to the lower water level and degradation ability. Variation coefficients of COD and TN WECC were close to each other, of which the average level was about 58.5%, a little higher than that of TP.
机译:提出了一种考虑非完全混合系数(NFMC)的新方法来计算与河流相连的大型湖泊的水环境承载力(WECC),其水文状况在一年中总是变化很大。 the阳湖是中国最典型的与河流相连的湖泊,也是中国最大的淡水湖,被选为研究区域。在野外调查和数值模拟的基础上,确定了不同湖泊区域月度污染物降解系数和非完全混合系数,以探讨Po阳湖普通水年中COD,TN和TP的WECC。结果表明,在一个常见水年的水文条件下,该湖中COD,TN和TP的总WECC分别为181.9×10 4 t,33.3×10 4 t和1.86×10 4 t。由于湖泊水量的变化和自净能力的变化,Po阳湖水体中CCCCs存在明显的时间波动。干旱季节的特征是较高的NFMC,但由于水位和降解能力较低,WECC较低。 COD和TN WECC的变异系数彼此接近,平均水平约为58.5%,略高于TP。

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