4.7 Article

Homogenization and Trend Analysis of the 1958-2016 In Situ Surface Solar Radiation Records in China

Journal

JOURNAL OF CLIMATE
Volume 31, Issue 11, Pages 4529-4541

Publisher

AMER METEOROLOGICAL SOC
DOI: 10.1175/JCLI-D-17-0891.1

Keywords

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Funding

  1. National Innovation Project for Meteorological Science and Technology: Quality Control, Fusion, and Reanalysis of Meteorological Observations [CMAGGTD003-5]
  2. Special Fund for Public Welfare Industry of Meteorology [GYHY201306061]

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This paper presents a method to homogenize China's surface solar radiation (SSR) data and uses the resulting homogenized SSR data to assess the SSR trend over the period 1958-2016. Neighboring surface sunshine duration (SSD) data are used as reference data to assess the SSR data homogeneity. A principal component analysis is applied to build a reference series, which is proven to be less sensitive to occasional data issues than using the arithmetic mean of data from adjacent stations. A relative or absolute test is applied to detect changepoints, depending on whether or not a suitable reference series is available. A quantile-matching method is used to adjust the data to diminish the inhomogeneities. As a result, 60 out of the 119 SSR stations were found to have inhomogeneity issues. These were mainly caused by changes in instrument and observation schedule. The nonclimatic changes exaggerated the SSR change rates in 1991-93 and resulted in a sudden rise in the national average SSR series, causing an unrealistically drastic trend reversal in the 1990s. This was diminished by the data homogenization. The homogenized data show that the national average SSR has been declining significantly over the period 1958-90; this dimming trend mostly diminished over the period 1991-2005 and was replaced by a brightening trend in the recent decade. From the homogenized SSR data, the 1958-90 and 1958-2005 dimming rate is estimated to be -6.13 +/- 0.47 and -5.08 +/- 0.27 W m(-2) decade(-1), respectively, and the 2005-16 brightening rate is 6.13 +/- 1.77 W m(-2) decade(-1).

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