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Temporal scale effect of loading data on instream nitrate-nitrogen load computation

机译:装载量数据在时间尺度上对河内硝酸盐-氮装载量计算的影响

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The temporal scale effect of loading data on nitrate-nitrogen load computation was examined using outputs of watershed modeling tool Hydrologic Simulation Program-FORTRAN (HSPF) for the Amite River in Louisiana, USA. The daily nitrate-nitrogen concentrations simulated using the HSPF were employed first to obtain daily, weekly, bi-weekly, and monthly average data and then to develop load duration curves for the data with four different temporal scales. The duration curves exhibited high variability in the load estimated using daily data as compared with those based on bi-weekly and monthly data. According to daily data, the nitrate-nitrogen load in the winter was found to be 2,780 kg. The nitrate-nitrogen load decreased with increasing temporal (daily, weekly, bi-weekly, and monthly) scale (commonly used in water quality monitoring) of the data. The coefficient of variation, used to quantify the effect of temporal scale on the load, was found to be linearly and inversely correlated with the logarithm of the time scale. Based on the finding, empirical equations were proposed to extrapolate near real-time data for flow and nitrate-nitrogen, greatly simplifying nutrient monitoring and reducing the cost involved in water quality monitoring.
机译:使用分水岭建模工具美国美国路易斯安那州阿米特河水文模拟程序FORTRAN(HSPF)的输出,检验了装载数据对硝态氮载荷计算的时间尺度影响。首先使用使用HSPF模拟的每日硝酸盐氮浓度来获取每日,每周,每两周和每月的平均数据,然后为具有四个不同时间尺度的数据绘制负荷持续时间曲线。与基于双周和每月数据的持续时间曲线相比,使用每日数据估计的持续时间曲线显示出很大的可变性。根据每日数据,发现冬季的硝酸盐氮负荷为2780公斤。硝酸盐氮负荷随时间(每天,每周,每两周和每月)规模(通常用于水质监测)的增加而降低。发现用于量化时间尺度对负载的影响的变异系数与时间尺度的对数线性和反相关。基于这一发现,提出了经验方程式,以推断流量和硝酸盐氮的近实时数据,从而大大简化了养分监测并降低了水质监测的成本。

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