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The effects of current landscape configuration on streamflow within selected small watersheds of the Atlanta metropolitan region

机译:当前景观配置对亚特兰大都市区选定小流域内河流流量的影响

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Study region This study investigated impacts of current landscape configuration on streamflow within selected small watersheds of the Atlanta, Georgia metropolitan region (AMR). Study focus To determine effects of current landscape arrangement on watershed-wide Hydrologic Unit Code (HUC)-12 land cover/land use (LC/LU), the configurational metric of contagion was chosen. Contagion-adjusted curve numbers (CNs) were calculated for all 405 HUC-12 watersheds in the AMR. 6 watersheds were chosen for Thornthwaite Water Balance (TWB) model evaluation based upon having a stream gage record of the 5 year (60 month) period most closely associated with contagion and CN values derived from the 2011 National Land Cover Dataset (NLCD). 4 watersheds out-performed their original CN watershed simulations based upon: Nash–Sutcliffe efficiency (NSE); room mean square error (RMSE)-standard deviation ratio (RSR); and Akaike Information Criteria (AIC) analysis. New hydrological insights Configurational metrics related to contagion of the aggregation index ( AI ) and clumpiness index ( CI ) indicated possible reasoning to explain differences found between the 4-watershed and 2-watershed categories. The AI of agricultural LC/LU within the 2-watershed category suggested greater landscape heterogeneity due to agricultural patch disaggregation, whereas the CI suggested greater overall disaggregation and landscape dispersion for all non-water LC/LU patches within the 2-watershed category and pointed towards greater landscape heterogeneity driven by higher dispersal of non-water patches. Both may lead to complex flow patterns not easily estimated within streamflow simulations.
机译:研究区域本研究调查了当前景观配置对佐治亚州亚特兰大都会区(AMR)选定小流域内的河流流量的影响。研究重点为了确定当前景观布局对流域范围的水文单位法规(HUC)-12土地覆盖/土地利用(LC / LU)的影响,选择了传染性的配置指标。计算了AMR中所有405个HUC-12流域的传染性调整曲线数(CN)。基于5年(60个月)期间与美国2011年国家土地覆盖数据集(NLCD)的传染性和CN值最密切相关的流量监测记录,选择了6个流域用于Thornthwaite水平衡(TWB)模型评估。基于以下因素,有4个流域的表现优于其原始的CN分水岭模拟:Nash–Sutcliffe效率(NSE);房间均方差(RMSE)-标准差比(RSR);和Akaike信息标准(AIC)分析。新的水文见解与聚集指数(AI)和凝块指数(CI)的传染性有关的配置指标表明,可能有理由解释4分水岭和2分水岭类别之间的差异。 2流域类别中农业LC / LU的AI值表明,由于农业斑块的分解,景观异质性更大,而CI表示2流域类别中所有非水LC / LU斑块的总体分解和景观散布性更高,并指出非水斑块的高度分散驱使土地景观更加趋异。两者都可能导致在流模拟中不容易估计的复杂流型。

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