Comparison of manual and automatic daily sunshine duration measurements at German climate reference stations

Q2 Earth and Planetary Sciences Advances in Science and Research Pub Date : 2019-08-19 DOI:10.5194/ASR-16-175-2019
L. Hannak, K. Friedrich, F. Imbery, F. Kaspar
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引用次数: 4

Abstract

Abstract. Precise quantification of climate change depends on long time series of meteorological variables. Such time series should be as homogeneous as possible but some changes of measurement conditions cannot be prevented. At German climate reference stations, parallel measurements are used to analyze the effects of changes in measurement systems for example for the transition from manual to automatic instruments. These parallel measurements aim to identify measurement uncertainties and to analyze the comparability of measurement systems to investigate the homogeneity. In this study, we investigate daily sunshine duration. Traditionally, manual measurements of daily sunshine duration are taken with Campbell-Stokes sunshine recorders. For automatic measurements the SONIe or SCAPP instrument is used. The different measurement principles (glass sphere and photodiode) cause systematic differences between the observations. During summer, values for manual observations are larger especially in case of frequent alternations between sunny and cloudy conditions. Furthermore, the standard deviation of the differences between the two measurement systems is larger during summer because of the greater day length. To adjust the automatic measurements a linear regression model is suggested based on parallel measurements from 13 climate reference stations in Germany. To validate the regression coefficients, a leave-one-out cross validation was performed (by leaving out data of individual stations). The regression coefficients (derived from different sets of stations) are similar, thereby indicating a robust data set for the estimation of the linear model. With this method we want to prevent breaks in long time series of daily sunshine duration caused by the transition from manual to automatic instruments.
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德国气候参考站每日手动和自动日照时数测量的比较
摘要气候变化的精确量化依赖于长时间序列的气象变量。该时间序列应尽可能均匀,但测量条件的一些变化是不可避免的。在德国气候参考站,平行测量被用来分析测量系统变化的影响,例如从手动仪器到自动仪器的过渡。这些平行测量的目的是识别测量不确定度,并分析测量系统的可比性,以研究均匀性。在这项研究中,我们调查了每日日照时长。传统上,每日日照时间的人工测量是用坎贝尔-斯托克斯日照记录仪进行的。对于自动测量,使用SONIe或SCAPP仪器。不同的测量原理(玻璃球和光电二极管)导致了观测结果之间的系统性差异。在夏季,人工观测的数值较大,特别是在晴天和阴天频繁交替的情况下。此外,由于夏季白昼长度较长,两种测量系统之间差异的标准差较大。为了调整自动测量值,提出了一种基于德国13个气候参考站平行测量值的线性回归模型。为了验证回归系数,进行了留一交叉验证(通过省略单个站点的数据)。回归系数(来自不同的台站集)相似,从而表明线性模型估计的稳健数据集。通过这种方法,我们希望防止由于从手动仪表过渡到自动仪表而导致的长时间序列的每日日照时间中断。
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来源期刊
Advances in Science and Research
Advances in Science and Research Earth and Planetary Sciences-Geophysics
CiteScore
4.10
自引率
0.00%
发文量
13
审稿时长
22 weeks
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