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Climate spatial variability and data resolution in a semi-arid watershed, south-eastern Arizona

机译:亚利桑那州东南部半干旱流域的气候空间变异性和数据分辨率

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摘要

In the 10,000km~2 San Pedro River watershed area in south-eastern Arizona, high-resolution spatial patterns of long-term precipitation and temperature were better reproduced by kriging climate data with elevation as external drift (KED) than by multiple linear regression on station location and elevation as judged by the spatial distribution of interpolation error. Mean errors were similar overall, and interpolation accuracy for both methods increased with increasing correlation between climate variables and elevation. Uncertainty in station locations had negligible effect on mean estimation error, although error for individual stations varied as much as 27%. Our future ability to examine spatial aspects of climate change at high spatial resolution will be severely limited by continuing closures of climate stations in this part of the United States.
机译:在亚利桑那州东南部10,000km〜2的圣佩德罗河流域地区,通过以海拔高度为外部漂移(KED)的气候数据进行克里格插值比通过多重线性回归能更好地再现长期降水和温度的高分辨率空间格局。通过插值误差的空间分布来判断站点的位置和海拔。平均误差总体上相似,并且两种方法的插值精度都随着气候变量与海拔之间的相关性增加而增加。台站位置的不确定性对平均估计误差的影响可忽略不计,尽管单个台站的误差变化幅度高达27%。在美国这部分地区,气候站的继续关闭将严重限制我们未来以高空间分辨率检查气候变化的空间方面的能力。

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