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Evaluation of spatial variability on hydrology and nutrient source loads at watershed scale using a modeling approach

机译:使用建模方法评估流域尺度上水文和营养源负荷的空间变异性

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Understanding the effects of spatial variability on hydrologic parameters and nutrient source load distribution is essential to develop water quality improvement programs. The objective of this research was to evaluate spatially distributed hydrologic variability, nutrient sources, and their loadings at the watershed scale using a modeling approach. The Soil and water Assessment Tool (SWAT) was applied to assess spatial variability of annual average water, sediment, total phosphorus (TP), and total nitrogen (TN) yields from the upper Pearl River Watershed (UPRW) in Mississippi, USA. The SWAT model was successfully calibrated, validated, and verified with good model efficiency (R~2 = 0.70 and E = 0.59) using monthly measured stream flow, daily observed flow, sediment, TP, and TN yields. The SWAT model results determined that spatial variability of annual average pollutant loads of water yield ranged from 877 to 206 mm, sediment yield ranged from 1.71 to 0.171 ha~(-1), TP ranged from 1.39 to 0.02 kg ha~(-1), and TN ranged from 10.22 to 0.69 kg ha~(-1) in the watershed sub-basins. Understanding of the spatial variability of hydrologic and nutrient source loads distribution helps watershed managers focus their management efforts to the most needy watershed sub-basins.
机译:了解空间变异性对水文参数和营养源负荷分布的影响对于制定水质改善计划至关重要。这项研究的目的是使用一种建模方法来评估流域尺度上空间分布的水文变异性,养分来源及其负荷。土壤和水评估工具(SWAT)用于评估美国密西西比州珠江上游流域(UPRW)的年平均水,沉积物,总磷(TP)和总氮(TN)产量的空间变异性。使用每月实测流量,每日实测流量,沉积物,总磷和总氮产量,成功地对SWAT模型进行了良好的模型效率(R〜2 = 0.70和E = 0.59)的校准,验证和验证。 SWAT模型结果确定水的年平均污染物负荷的空间变异性为877至206 mm,沉积物产量为1.71至0.171 ha〜(-1),TP的范围为1.39至0.02 kg ha〜(-1)流域子流域的总氮含量在10.22至0.69 kg ha〜(-1)之间。了解水文和营养源负荷分布的空间变异性有助于流域管理者将其管理工作集中于最需要的流域子流域。

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