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Spatial and temporal variability of the overall error of National Atmospheric Deposition Program measurements determined by the USGS collocated-sampler program, water years 1989-2001

机译:由USGS并置取样器计划确定的国家大气沉积计划测量结果总体误差的时空变化,1989-2001水年

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Data from the U.S. Geological Survey (USGS) collocated-sampler program for the National Atmospheric Deposition Program/National Trends Network (NADP/NTN) are used to estimate the overall error of NADP/NTN measurements. Absolute errors are estimated by comparison of paired measurements from collocated instruments. Spatial and temporal differences in absolute error were identified and are consistent with longitudinal distributions of NADP/NTN measurements and spatial differences in precipitation characteristics. The magnitude of error for calcium, magnesium, ammonium, nitrate, and sulfate concentrations, specific conductance, and sample volume is of minor environmental significance to data users. Data collected after a 1994 sample-handling protocol change are prone to less absolute error than data collected prior to 1994. Absolute errors are smaller during nonwinter months than during winter months for selected constituents at sites where frozen precipitation is common. Minimum resolvable differences are estimated for different regions of the USA to aid spatial and temporal watershed analyses. Published by Elsevier Ltd.
机译:来自美国国家地质调查局(USGS)的国家大气沉积计划/国家趋势网络(NADP / NTN)并置采样程序的数据用于估算NADP / NTN测量的总体误差。通过比较并置仪器的成对测量值来估计绝对误差。确定了绝对误差的时空差异,并与NADP / NTN测量的纵向分布和降水特征的空间差异一致。钙,镁,铵,硝酸盐和硫酸盐浓度,比电导和样品量的误差幅度对数据用户而言对环境的影响很小。在1994年采样处理协议更改后收集的数据比在1994年之前收集的数据更容易出现绝对误差。对于那些通常存在冻结降水的地点,某些特定成分的非冬季月份的绝对误差较小。估计了美国不同地区的最小可分辨差异,以帮助进行时空分水岭分析。由Elsevier Ltd.发布

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