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首页> 外文期刊>Ecological Modelling >Habitat succession of the Yangtze finless porpoise in Poyang Lake under the changing hydrodynamic and feeding environment
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Habitat succession of the Yangtze finless porpoise in Poyang Lake under the changing hydrodynamic and feeding environment

机译:普通水动力和饲养环境下鄱阳湖河扎无铅海豚的栖息地连续

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摘要

Poyang Lake, located in the middle and lower reaches of the Yangtze River, is the largest freshwater lake in China and the most important habitat for the Yangtze finless porpoise. With the operation of the Three Gorges Dam, the water ecosystem functions of Poyang Lake are deteriorating, which has negatively influenced the habitat of Yangtze finless porpoise. In this research, quantitative functions of the three environmental factors, flow velocity, water depth and food availability, which have the greatest impact on the abundance of Yangtze finless porpoise were constructed, and then a habitat model of the Yangtze finless porpoise was established based on hydrodynamic model. The model results are in good agreement with the observed data, and the simulation well reproduces the spatial position distribution and abundance of the Yangtze finless porpoise in Poyang Lake. Then, the proposed model is applied to compare three scenarios before and after the operation of Three Gorges Dam, and simulate the evolution of hydrodynamics, feeding environment and Yangtze finless porpoise habitat in Poyang Lake. Two typical parts of river-lake connection channel and the main lake area were analyzed separately. Results show that the water depth, surface area and food availability in Poyang Lake are gradually decreasing, which lead to the weakening and plaque-like fragmentation of the Yangtze finless porpoise habitat. The findings in this study could help to understand how changes in aquatic conditions affect the ecological habitat, and provide scientific guidance for the future protection of Yangtze finless porpoise.
机译:鄱阳湖位于长江中下游,是中国最大的淡水湖泊,最重要的栖息地为长江无线海豚。随着三峡大坝的运作,鄱阳湖的水生态系统功能劣化,这对长江栖息地的栖息地产生了负面影响。在这项研究中,建立了三种环境因素,流速,水深和食品可用性的定量功能,对长江丰富的豚鼠的丰富影响最大,然后基于流体动力学模型。模型结果与观察到的数据吻合良好,仿真良好良好地再现了鄱阳湖中长江无翅流廊的空间位置分布和丰富。然后,拟议的模型用于比较三峡水坝操作前后的三种情况,并模拟鄱阳湖中流体动力学,饲养环境和长江的演变。分别分别分析了两种典型的河湖连接通道和主湖区。结果表明,鄱阳湖的水深,表面积和食品可用性逐渐减少,这导致长江无氟化水栖息地的弱化和斑块状片段化。本研究的调查结果可以有助于了解水生条件的变化如何影响生态栖息地,并为未来保护长江无氟流行者提供科学指导。

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