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首页> 外文期刊>Journal of Hydrology >Shallow lake water exchange process before and after water diversion projects as affected by wind field
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Shallow lake water exchange process before and after water diversion projects as affected by wind field

机译:浅水湖水交换过程,下划线后和受风场影响的项目

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摘要

For shallow lakes, the water exchange process is a crucial factor that affects lake eutrophication, which can be solved by a water diversion project (WDP). However, the water exchange process in shallow lakes is complex and affected by hydrological characteristics (the water level and inflow stream) and external forcing (the wind field). It is of profound significance to evaluate the process of lake water exchange by combining dynamic and static methods. In this study, for hydrological characterization, a Morlet wavelet analysis was used for the periodic analysis of 24-year water level data. The monthly discharge of the main rivers over three hydrological years was calculated by a hydrological frequency curve and water balance theory. The external wind field was studied by the wind sheltering coefficient to simulate an uneven distribution. The water age model and particle tracking model were coupled to explore the water exchange process of Dianchi Lake with the influence of two major WDPs. The results show that in each scenario, the distribution of the water age presents a radial distribution and decreases in age from the centre of the lake to the shore, and the largest proportion of the oldest water occurs without exception at the centre of Dianchi Lake. Moreover, the water mass in Dianchi Lake generally circulates counter clockwise around a circle of a fixed size. When the Niulanjiang Water Diversion Project (NWDP) and the Dianzhong Water Diversion Project (DWDP) are combined for water diversion, the annual water diversion volume accounts for 76% of the lake water volume, which can reduce the water age of the lake centre by 38%-52%.
机译:对于浅水湖泊,水交换过程是影响湖泊富营养化的关键因素,可以通过引水工程(WDP)来解决。然而,浅水湖泊的水交换过程是复杂的,受水文特征(水位和流入流)和外部强迫(风场)的影响。采用动态和静态相结合的方法对湖泊水交换过程进行评价具有深远的意义。在本研究中,对于水文特征,Morlet小波分析用于24年水位数据的周期分析。根据水文频率曲线和水量平衡理论,计算了三个水文年内主要河流的月流量。利用遮风系数研究外部风场,模拟不均匀分布。将水龄模型和粒子追踪模型耦合起来,研究了两种主要WDP对滇池水交换过程的影响。结果表明,在每种情况下,从湖心到湖岸,水龄分布呈放射状分布,年龄呈下降趋势,最古老的水的最大比例无一例外地出现在滇池中心。此外,滇池中的水团通常围绕一个固定大小的圆圈逆时针循环。当牛栏江引水工程(NWDP)和滇中引水工程(DWDP)联合引水时,年引水量占湖泊水量的76%,可将湖泊中心的水龄降低38%-52%。

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