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A tidal creek water budget: Estimation of groundwater discharge and overland flow using hydrologic modeling in the Southern Everglades

机译:潮汐河水预算:使用大沼泽地南部的水文模型估算地下水流量和陆上流量

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Taylor Slough is one of the natural freshwater contributors to Florida Bay through a network of microtidal creeks crossing the Everglades Mangrove Ecotone Region (EMER). The EMER ecological function is critical since it mediates freshwater and nutrient inputs and controls the water quality in Eastern Florida Bay. Furthermore, this region is vulnerable to changing hydrodynamics and nutrient loadings as a result of upstream freshwater management practices proposed by the Comprehensive Everglades Restoration Program (CERP), currently the largest wetland restoration project in the USA. Despite the hydrological importance of Taylor Slough in the water budget of Florida Bay, there are no fine scale (~1 km~2) hydrodynamic models of this system that can be utilized as a tool to evaluate potential changes in water flow, salinity, and water quality. Taylor River is one of the major creeks draining Taylor Slough freshwater into Florida Bay. We performed a water budget analysis for the Taylor River area, based on long-term hydrologic data (1999-2007) and supplemented by hydrodynamic modeling using a MIKE FLOOD (DHI, http://dhigroup.com/) model to evaluate groundwater and overland water discharges. The seasonal hydrologic characteristics are very distinctive (average Taylor River wet vs. dry season outflow was 6 to 1 during 1999-2006) with a pronounced interannual variability of flow. The water budget shows a net dominance of through flow in the tidal mixing zone, while local precipitation and evapotranspiration play only a secondary role, at least in the wet season. During the dry season, the tidal flood reaches the upstream boundary of the study area during approximately 80 days per year on average. The ground-water field measurements indicate a mostly upwards-oriented leakage, which possibly equals the evapotranspiration term. The model results suggest a high importance of groundwater contribution to the water salinity in the EMER. The model performance is satisfactory during the dry season where surface flow in the area is confined to the Taylor River channel. The model also provided guidance on the importance of capturing the overland flow component, which enters the area as sheet flow during the rainy season. Overall, the modeling approach is suitable to reach better understanding of the water budget in the mangrove region. However, more detailed field data is needed to ascertain model predictions by further calibrating overland flow parameters.
机译:泰勒·斯劳(Taylor Slough)是穿越横穿大沼泽地红树林生态交错带(EMER)的微潮小河网络组成的佛罗里达湾天然淡水贡献者之一。 EMER的生态功能至关重要,因为它介导了淡水和养分的输入并控制了佛罗里达东湾的水质。此外,由于目前美国最大的湿地恢复项目-综合大沼泽地恢复计划(CERP)提出的上游淡水管理方法,该地区容易受到水动力和养分含量变化的影响。尽管泰勒·斯劳在佛罗里达湾的水预算中具有重要的水文学意义,但该系统尚无精细尺度(〜1 km〜2)的水动力模型可以用作评估水流,盐度和水位潜在变化的工具。水质。泰勒河是将泰勒斯劳淡水排入佛罗里达湾的主要小河之一。我们根据长期的水文数据(1999-2007年)对泰勒河地区进行了水费预算分析,并使用MIKE FLOOD(DHI,http://dhigroup.com/)模型进行了水动力建模,以评估地下水和水质。陆上水排放。季节性水文特征非常独特(泰勒河湿季与旱季的平均流出量在1999-2006年间为6:1),且流量之间存在明显的年际变化。水分预算显示潮汐混合区通流的净支配地位,而局部降水和蒸散量至少在湿季才起次要作用。在干旱季节,潮汐洪水平均每年约80天到达研究区域的上游边界。地下水田的测量结果表明,渗漏主要是向上的,可能等于蒸散项。模型结果表明,EMER中地下水对盐度的贡献非常重要。在干旱季节,该地区的地表水仅限于泰勒河河道,模型性能令人满意。该模型还为捕获陆流分量的重要性提供了指导,该陆流分量在雨季以表层流的形式进入该区域。总体而言,建模方法适合于更好地了解红树林地区的水预算。但是,需要更详细的现场数据来通过进一步校准陆上流量参数来确定模型预测。

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