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A mangrove creek restoration plan utilizing hydraulic modeling

机译:利用水力模型的红树林小河恢复计划

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摘要

Despite the valuable ecosystem services provided by mangrove ecosystems they remain threatened around the globe. Urban development has been a primary cause for mangrove destruction and deterioration in south Florida USA for the last several decades. As a result, the restoration of mangrove forests has become an important topic of research. Using field sampling and remote-sensing we assessed the past and present hydrologic conditions of a mangrove creek and its connected mangrove forest and brackish marsh systems located on the coast of Naples Bay in southwest Florida. We concluded that the hydrology of these connected systems had been significantly altered from its natural state due to urban development. We propose here a mangrove creek restoration plan that would extend the existing creek channel 1.1 km inland through the adjacent mangrove forest and up to an adjacent brackish marsh. We then tested the hydrologic implications using a hydraulic model of the mangrove creek calibrated with tidal data from Naples Bay and water levels measured within the creek. The calibrated model was then used to simulate the resulting hydrology of our proposed restoration plan. Simulation results showed that the proposed creek extension would restore a twice-daily flooding regime to a majority of the adjacent mangrove forest and that there would still be minimal tidal influence on the brackish marsh area, keeping its salinity at an acceptable level. This study demonstrates the utility of combining field data and hydraulic modeling to aid in the design of mangrove restoration plans.
机译:尽管红树林生态系统提供了宝贵的生态系统服务,但它们仍然在全球范围内受到威胁。在过去的几十年中,城市发展一直是美国南佛罗里达州红树林遭到破坏和退化的主要原因。结果,红树林的恢复已成为重要的研究课题。通过现场采样和遥感,我们评估了位于佛罗里达西南部那不勒斯湾海岸的红树林小溪及其相连的红树林和咸淡沼泽系统的过去和现在的水文状况。我们得出的结论是,由于城市发展,这些连接系统的水文状况已从自然状态发生了很大变化。我们在此提出红树林小河恢复计划,该计划将使现有小河河道向内延伸1.1公里,穿过相邻的红树林并延伸至相邻的微咸沼泽。然后,我们使用那不勒斯湾的潮汐数据和小溪内测得的水位进行了校准的红树林小溪的水力模型测试了水文影响。然后将校准后的模型用于模拟我们提出的修复计划的水文结果。模拟结果表明,拟议的河道扩展将恢复每天两次的淹没状态,覆盖大部分相邻的红树林,并且对微咸沼泽地区的潮汐影响仍然最小,将其盐度保持在可接受的水平。这项研究证明了结合现场数据和水力模​​型来帮助设计红树林恢复计划的实用性。

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