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首页> 外文期刊>International journal of applied mechanics >On the Hydrodynamic Behavior of the Changed River-Lake Relationship in a Large Floodplain System, Poyang Lake (China)
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On the Hydrodynamic Behavior of the Changed River-Lake Relationship in a Large Floodplain System, Poyang Lake (China)

机译:论鄱阳湖大型洪泛体系中改变河湖关系的流体动力学行为

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摘要

Poyang lake floodplains are hydrologically complex and dynamic systems which exhibit dramatic intra-annual wetting and drying. The flow regime of the Yangtze River was previously known to play an important role in affecting Poyang Lake and its extremely productive floodplains (river-lake relationship). The recent severe declines and recessions in the lake are closely linked to the changed river-lake relationship, resulting in significant hydrological, ecological, and economic problems. This study aims to examine the spatiotemporal heterogeneity of the floodplain hydrodynamic behaviors with respect to impacts of the changed river-lake relationship, characterized by the lake water level, inundation area, and inundation duration based on a floodplain hydrodynamic model of Poyang Lake, and to further quantify the severity of dryness recently endured since 2000. Simulation results show that, in general, the current modified river-lake relationship is more likely to affect the hydrological seasonality of the floodplain system since 2000, relative to the flooding and drying cycles during past decades (1953-2000). The present hydrodynamic behaviors suffered significant change due to the greatest interference from the altered river-lake relationship, particularly for the falling period in October. On average, the floodplain water level and inundation duration decreased by 6 m and 12 days during October, respectively. Additionally, the highest monthly shrinkage rate in floodplain inundation shifted from the period of October-November to September-October, with the mean inundation area decreasing by around 50%, demonstrating an advanced and prolonged dry condition. The spatial responses of the hydrodynamics in the low-slope floodplains are most likely to be affected by the dynamic river-lake relationship, as expected. This study assessed the effects of the altered river-lake relationship on the hydrological regime of the Poyang Lake floodplains in terms of spatiotemporal distributions and changing processes for the periodic inundated behavior, which can support the relevant study of the subsequent ecological effects on the wetlands.
机译:Poyang Lake Poirolllaines是水文复杂的和动态系统,其表现出剧烈的年内润湿和干燥。以前熟悉长江流动制度在影响鄱阳湖及其极其生产的泛滥平坦(河湖关系)方面发挥着重要作用。湖泊近期的严重下降和衰退与改变的河湖关系密切相关,导致严重的水文,生态和经济问题。该研究旨在研究改变的河湖关系的影响,以湖水水位,淹没区域和鄱阳湖泛洪水流体动力学模型为特征的洪泛平坦流体动力学行为的时空异质性。进一步量化了自2000年以来最近待了干旱的严重程度。模拟结果表明,一般而言,自2000年以来,目前改良的河湖关系更有可能影响洪泛体系的水文季节性,相对于过去的洪水和干燥循环数十年(1953-2000)。目前的流体动力行为由于河湖关系改变的干扰最大,特别是10月下降期。平均而言,洪泛区水位和淹没持续时间分别在10月份下降了6米和12天。此外,洪泛区洪水的最高月收缩率从10月至10月至10月转移到9月至10月,平均淹没面积约为50%左右,展示了先进和长期的干旱条件。低坡泛源性流体动力学的空间反应最有可能受到预期的动态河湖关系的影响。本研究评估了河湖关系改变的河湖关系对鄱阳湖湖洪泛区水文制度的影响,以时尚分布和改变周期淹没行为的过程,这可以支持对湿地随后的生态影响的相关研究。

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