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首页> 外文期刊>River research and applications >The impact of climate change on the morphology of a tidal freshwater wetland affected by tides, discharge, and wind
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The impact of climate change on the morphology of a tidal freshwater wetland affected by tides, discharge, and wind

机译:气候变化对潮汐,流量和风影响的潮汐淡水湿地形态的影响

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摘要

Tidal freshwater wetlands are threatened by climate change, especially by rising sea levels. Until now, research in these wetlands has focused mostly on determining historical and present-day accretion rates without analysing the influence of climate change on future developments. We study a recently constructed freshwater wetland under influence of tides, wind, and riverine discharges and carry out a scenario analysis to evaluate the impact of climate change on morphodynamics. We use a numerical model that describes the hydrodynamics and morphology in the study area and includes the impact of vegetation and carry out transient scenario runs for the period 2015-2050 with gradually changing boundary conditions. We conclude that the simulated accretion rates are significantly lower than the rate of sea level rise, meaning that the wetland will gradually convert to open water. We also find that the morphological changes can largely be attributed to morphological stabilization of the constructed wetland and not to climate change. Wind plays an important role through resuspension and redistribution of fine sediment, and neglecting it would lead to a significant overestimation of accretion rates on the flats.
机译:潮汐淡水湿地受到气候变化的威胁,特别是海平面上升。迄今为止,在这些湿地上的研究主要集中在确定历史和当今的增生率,而没有分析气候变化对未来发展的影响。我们研究了潮汐,风和河水排放影响下最近建造的淡水湿地,并进行了情景分析以评估气候变化对形态动力学的影响。我们使用一个数值模型来描述研究区域的水动力和形态,并包括植被的影响,并在边界条件逐渐变化的情况下,进行2015-2050年的瞬态情景运行。我们得出的结论是,模拟的吸水率明显低于海平面上升的速度,这意味着湿地将逐渐转变为开放水域。我们还发现,形态变化在很大程度上可归因于人工湿地的形态稳定,而不是气候变化。风通过细小沉积物的重悬和重新分配起着重要作用,而忽略风将导致对公寓积聚率的高估。

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