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Turkey Creek - a case study of ecohydrology and integrated watershed management in the low-gradient Atlantic coastal plain, USA

机译:土耳其河 - 美国低梯度大西洋沿岸平原的生态水文学和流域综合管理案例研究

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摘要

Water yield, water supply and quality, wildlife habitat, and ecosystem productivity and services are important societal concerns for natural resource management in the 21st century. Watershed-scale ecohydrologic studies can provide needed context for addressing complex spatial and temporal dynamics of these functions and services. This study was conducted on the 5240 ha Turkey Creek watershed (WS 78) draining a 3rd order stream on the Santee Experimental Forest within the South Carolina Atlantic Coastal Plain, USA. The study objectives were to present the hydrologic characteristics of this relatively undisturbed, except by a hurricane (Hugo, 1989), forested water-shed and to discuss key elements for watershed management, including water resource assessment (WRM), modeling integrated water resources management, environmental assessment, land use planning, social impact assessment, and information management. Runoff coefficients, flow duration curves, flood and low flow frequency curves, surface and ground water yields were assessed as elements of the WRM. Results from the last 10 years of interdisciplinary studies have also advanced the understanding of coastal ecohydrologic characteristics and processes, water balance, and their modeling including the need of high resolution LiDAR data. For example, surface water dynamics were shown to be regulated primarily by the water table, dependent upon pre- cipitation and evapotranspiration (ET). Analysis of pre- and post-Hugo streamflow data showed somewhat lower but insignificant (α = 0.05) mean annual flow but increased frequency of larger flows for the post-Hugo compared with the pre-Hugo level. However, there was no significant difference in mean annual ET, potentially indicating the resiliency of this coastal forest. Although the information from this study may be useful for comparison of coastal ecohydrologic issues, it is becoming increasingly clear that multi-site studies may be warranted to understand these complex systems in the face of climate change, sea level rise, and increasing development in coastal regions.
机译:在21世纪,水的产量,水的供应和质量,野生生物的栖息地以及生态系统的生产力和服务是社会对自然资源管理的重要关注。流域规模的生态水文学研究可以提供解决这些功能和服务的复杂时空动态的必要背景。这项研究是在5240公顷的土耳其河流域(WS 78)上进行的,该流域排泄了美国南卡罗来纳州大西洋沿岸平原内Santee实验森林上的三阶水流。该研究的目的是提出该相对不受干扰的水文特征,除了飓风(Hugo,1989),森林流域,并讨论流域管理的关键要素,包括水资源评估(WRM),对综合水资源管理进行建模,环境评估,土地使用规划,社会影响评估和信息管理。径流系数,流量持续时间曲线,洪水和低流量频率曲线,地表水和地下水的产量均作为WRM的要素进行了评估。过去十年的跨学科研究结果也增进了人们对沿海生态水文特征和过程,水平衡及其建模的理解,包括对高分辨率LiDAR数据的需求。例如,地表水动力学显示主要受地下水位调节,这取决于降水和蒸散量(ET)。雨前和雨后的流量数据分析显示,雨果后的平均年流量比雨前的水平稍低,但微不足道(α= 0.05),但较大流量的频率增加。但是,平均年ET没有显着差异,可能表明该沿海森林具有复原力。尽管从这项研究中获得的信息可能有助于比较沿海生态水文问题,但越来越清楚的是,面对气候变化,海平面上升和沿海地区不断增长的发展,可能需要进行多地点研究以了解这些复杂的系统。地区。

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