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Estuarine Salinity Intrusion and Implications for Aquatic Habitat: A Case Study of the Lower St. Johns River Estuary, Florida

机译:河口盐度入侵及其对水生生物的影响:以佛罗里达州圣约翰斯河口下游为例

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The Lower St. Johns River Estuary in Florida has experienced both urban and exurban development along its banks over the course of many decades. The extent of salinity intrusion into the estuary is controlled by a combination of factors which may be altered through natural or anthropogenic forces. To better understand the factors controlling salinity intrusion, the environmental fluid dynamics code plus (EFDC+) was applied to model the hydrodynamics of the estuary. This study discusses the calibration and validation of the model, analysis of the extent of salinity intrusion, and application of habitat analysis using the EFDC_Explorer modeling system (EEMS). The results of this study showed that the extent of salinity intrusion in the LSJR estuary is primarily controlled through varying combinations of upstream flow, long-term variations in the open ocean, and wind drag. Results of the habitat analysis concerning submerged aquatic vegetation and wetlands constitute a baseline for comparison with alternative management and future change scenarios for the basin.
机译:佛罗里达州的下圣约翰斯河口沿岸两岸经历了数十年的城市和郊区发展。盐度侵入河口的程度由多种因素共同控制,这些因素可能会通过自然或人为力量而改变。为了更好地了解控制盐度入侵的因素,应用了环境流体动力学规范(EFDC +)对河口的流体动力学进行建模。这项研究讨论了模型的校准和验证,盐度入侵程度的分析以及使用EFDC_Explorer建模系统(EEMS)进行的栖息地分析的应用。这项研究的结果表明,LSJR河口盐分入侵的程度主要是通过上游水流,远洋的长期变化和风阻的变化组合来控制的。有关淹没的水生植被和湿地的栖息地分析结果构成了与流域的替代管理和未来变化方案进行比较的基准。

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