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Windows of opportunity for salt marsh vegetation establishment on bare tidal flats: The importance of temporal and spatial variability in hydrodynamic forcing

机译:在裸露的潮滩上建立盐沼植被的机会之窗:水动力强迫中时空变化的重要性

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摘要

Understanding the mechanisms limiting and facilitating salt marsh vegetation initial establishment is of widespread importance due to the many valuable services salt marsh ecosystems offer. Salt marsh dynamics have been investigated by many previous studies, but the mechanisms that enable or disable salt marsh initial establishment are still understudied. Recently, the “windows of opportunity” (WoO) concept has been proposed as a framework providing an explanation for the initial establishment of biogeomorphic ecosystems and the role of physical disturbance herein. A WoO is a sufficiently long disturbance-free period following seedling dispersal, which enables successful establishment. By quantifying the occurrence of WoO, vegetation establishment pattern can be predicted. For simplicity sake and as prove of concept, the original WoO framework considers tidal inundation as the only physical disturbance to salt marsh establishment, whereas the known disturbance from tidal currents and wind waves is ignored. In this study, we incorporate hydrodynamic forcing in the WoO framework. Its spatial and temporal variability is considered explicitly in a salt marsh establishment model. We used this model to explain the observed episodic salt marsh recruitment in the Westerschelde Estuary, Netherlands. Our results reveal that this model can significantly increase the spatial prediction accuracy of salt marsh establishment compared to a model that excludes the hydrodynamic disturbance. Using the better performing model, we further illustrate how tidal flat morphology determines salt marsh establishing elevation and width via hydrodynamic force distribution. Our model thus offers a valuable tool to understand and predict bottlenecks of salt marsh restoration and consequences of changing environmental conditions due to climate change.
机译:由于盐沼生态系统提供了许多有价值的服务,因此了解限制和促进盐沼植被初始建立的机制具有广泛的重要性。以前的许多研究已经研究了盐沼动力,但是仍未研究启用或禁用盐沼初始建立的机制。最近,提出了“机会之窗”(WoO)概念作为框架,为生物地貌生态系统的初步建立和此处的物理干扰作用提供解释。 WoO是幼苗散布后足够长的无干扰时间,因此可以成功建立。通过量化WoO的发生,可以预测植被的建立模式。为简单起见并作为概念证明,原始的WoO框架将潮汐淹没视为对盐沼建立的唯一物理干扰,而忽略了由潮流和风波引起的已知干扰。在这项研究中,我们将流体动力强迫纳入了WoO框架中。在盐沼建立模型中明确考虑了其时空变异性。我们使用此模型来解释在荷兰的韦斯特舍尔德河口观察到的情节性盐沼募集活动。我们的结果表明,与排除水动力干扰的模型相比,该模型可以显着提高盐沼建立的空间预测准确性。使用性能更好的模型,我们进一步说明了潮滩形态如何通过流体动力分布确定盐沼建立海拔和宽度的方法。因此,我们的模型提供了一种有价值的工具,可用于了解和预测盐沼恢复的瓶颈以及气候变化导致的环境条件变化的后果。

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