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Interpolation of monthly mean temperatures using cokriging in spherical coordinates

机译:在球坐标系中使用协克里金插值每月平均温度

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摘要

Paleoclimate reconstructions are generally validated on recent periods. To obtain a set of instrumental records at the regional scale, a time series of monthly mean temperatures in Northeastern Canada were interpolated for the 1961-2000 period. Records were provided by 202 meteorological stations. Temperatures derived from a Canadian regional climate model (Climate Model CRCM 4.2.3 from the AMNO domain produced at ~50 km resolution) were added as secondary information to take into account local heterogeneity and temporal dependencies. Geostatistical interpolation of the measured temperature was calculated using CRCM modelled data as a covariable and then compared to an ordinary kriging performed on a time series of mean temperature anomalies. Spherical distances between locations were calculated taking into account the curvature of the Earth with monthly semivariances being modelled using Cauchy variograms. Mean absolute error values (1.5 ± 1.2 °C) were calculated for the whole period using cross-validation procedures. Errors were found to have the same order of magnitude in the central part of the study area where few recorded temperatures were available. Monthly mean temperature grids are publicly available through the Institut National de la Recherche Scientifique (http://url.in.rs/3P).
机译:古气候重建通常在最近时期得到验证。为了获得一组区域范围内的仪器记录,对加拿大东北部1961-2000年期间的月平均气温的时间序列进行了插值。记录由202个气象站提供。考虑到局部异质性和时间依赖性,添加了加拿大区域气候模型(来自AMNO域的气候模型CRCM 4.2.3,以〜50 km的分辨率产生)的温度作为辅助信息。使用CRCM模型数据作为协变量来计算所测温度的地统计插值,然后将其与对平均温度异常的时间序列执行的普通克里金法进行比较。计算位置之间的球面距离时要考虑到地球的曲率,并使用柯西变异函数对月度半方差建模。使用交叉验证程序计算整个期间的平均绝对误差值(1.5±1.2°C)。在几乎没有记录的温度的研究区域的中心部分,发现误差具有相同的数量级。每月平均温度网格可通过国家科学研究所(http://url.in.rs/3P)公开获得。

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