Schwarz Gregory E, Alexander Richard B, Smith Richard A, Preston Stephen D
J Am Water Resour Assoc. 2011 Oct;47(5):1151-1172. doi: 10.1111/j.1752-1688.2011.00581.x.
This analysis modifies the parsimonious specification of recently published total nitrogen (TN) and total phosphorus (TP) national-scale SPAtially Referenced Regressions On Watershed attributes models to allow each model coefficient to vary geographically among three major river basins of the conterminous United States. Regionalization of the national models reduces the standard errors in the prediction of TN and TP loads, expressed as a percentage of the predicted load, by about 6 and 7%. We develop and apply a method for combining national-scale and regional-scale information to estimate a hybrid model that imposes cross-region constraints that limit regional variation in model coefficients, effectively reducing the number of free model parameters as compared to a collection of independent regional models. The hybrid TN and TP regional models have improved model fit relative to the respective national models, reducing the standard error in the prediction of loads, expressed as a percentage of load, by about 5 and 4%. Only 19% of the TN hybrid model coefficients and just 2% of the TP hybrid model coefficients show evidence of substantial regional specificity (more than ±100% deviation from the national model estimate). The hybrid models have much greater precision in the estimated coefficients than do the unconstrained regional models, demonstrating the efficacy of pooling information across regions to improve regional models.
本分析修改了最近发表的总氮(TN)和总磷(TP)全国尺度流域属性空间参考回归模型的简约规范,以使每个模型系数在美国本土三个主要流域之间存在地理差异。全国模型的区域化将TN和TP负荷预测中的标准误差(以预测负荷的百分比表示)降低了约6%和7%。我们开发并应用了一种方法,将全国尺度和区域尺度的信息相结合,以估计一个混合模型,该模型施加跨区域约束,限制模型系数的区域变化,与一组独立的区域模型相比,有效地减少了自由模型参数的数量。混合TN和TP区域模型相对于各自的全国模型具有更好的模型拟合度,将负荷预测中的标准误差(以负荷的百分比表示)降低了约5%和4%。只有19%的TN混合模型系数和仅2%的TP混合模型系数显示出显著的区域特异性(与全国模型估计值的偏差超过±100%)。混合模型在估计系数方面比无约束区域模型具有更高的精度,证明了跨区域汇总信息以改进区域模型的有效性。