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Predicting floodplain inundation and vegetation dynamics in arid wetlands

机译:预测干旱湿地洪泛区淹没和植被动态

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The Macquarie Marshes is a freshwater wetland system located in semiarid Australia. The ecological importance of this site has been recognized under the Ramsar convention. Plant associations in the marshes has shown a complex dynamic where some wetland vegetation patches have transitioned to terrestrial vegetation during severe drought, but also quickly responded to increased inflows due to record and near record rainfall accompanied by water releases from an upstream reservoir. Management decisions regarding the environmental flows require the use of predictive tools in order to assess the response of the vegetation. We have developed a vegetation response model that couples hydrodynamic modelling of the northern Macquarie Marshes with watering requirements of different plant associations and vegetation succession rules. The model simulates floods in the wetland during a series of years, after which patches of vegetation are analysed according to water depth, percent exceedance time and frequencies of inundation. During the simulated period, the patch can have adequate watering conditions, or it can have critical conditions that would lead to a succession to another type of vegetation. The predicted vegetation is reintroduced in the model, providing feedbacks for the next simulation period. In this contribution, we implemented the model to simulate changes of wetland understory during the period 1991 to 2014.
机译:Macquarie Marshes是一个淡水湿地系统,位于Meviarid澳大利亚。该网站的生态重要性已根据拉姆萨尔公约确认。沼泽中的工厂协会表现出一种复杂的动态,一些湿地植被斑块在严重干旱期间转变为陆地植被,而且由于从上游水库的水释放,由于记录和近记录降雨,还迅速回应了增加的流入。关于环境流的管理决定需要使用预测工具,以评估植被的响应。我们开发了一种植被响应模型,耦合北部麦夸里沼泽的流体动力学建模,具有不同植物协会和植被继承规则的浇水要求。该模型在一系列年内模拟了湿地的洪水,之后根据水深分析植被斑块,百分比零的淹没时间和频率。在模拟期间,贴剂可以具有足够的浇水条件,或者它可以具有临界条件,这将导致另一种类型的植被。预测植被在模型中重新引入,为下一个模拟周期提供反馈。在这一贡献中,我们实施了模型,以模拟1991年至2014年期间湿地林的变化。

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