2002•Geophysical Research LettersRequires access

Observed reductions of surface solar radiation at sites in the United States and worldwide from 1961 to 1990

Beate G. Liepert

Open publisher page 500 citations

Abstract

Surface solar radiation revealed an estimated 7 W/m2 or 4% decline at sites worldwide from 1961 to 1990. Here I find that the strongest declines occurred in the United States sites with 19 W/m2 or 10%. The clear sky optical thickness effect accounts for −8 W/m2 and the cloud optical thickness effect for −18 W/m2 in three decades. If the observed increases in cloud cover frequencies are added to the clear sky and cloud optical thickness effect, the higher all sky reduction in solar radiation in the United States can be explained. It is shown that solar radiation declined below cloud‐free sky because of the reduction of the cloud‐free fraction of the sky itself and because of the reduction of clear sky optical thickness. Solar radiation exhibits no significant changes below cloud‐covered sky because reduced cloud optical thickness is compensated by increased frequencies of hours with overcast skies.

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What this paper is about

Surface solar radiation revealed an estimated 7 W/m2 or 4% decline at sites worldwide from 1961 to 1990. Here I find that the strongest declines occurred in the United States sites with 19 W/m2 or 10%. The clear sky optical thickness effect accounts for −8 W/m2 and the cloud optical thickness effect for −18 W/m2 in three decades. If the observed increases in cloud cover frequencies are added to the clear sky and cloud optical thickness effect, the higher all sky reduction in solar radiation in the United States can be explained. It is shown that solar radiation declined below cloud‐free sky because of the reduction of the cloud‐free fraction of the sky itself and because of the reduction of clear sky optical thickness. Solar radiation exhibits no significant changes below cloud‐covered sky because reduced cloud optical thickness is compensated by increased frequencies of hours with overcast skies.

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Available abstract

Surface solar radiation revealed an estimated 7 W/m2 or 4% decline at sites worldwide from 1961 to 1990. Here I find that the strongest declines occurred in the United States sites with 19 W/m2 or 10%. The clear sky optical thickness effect accounts for −8 W/m2 and the cloud optical thickness effect for −18 W/m2 in three decades. If the observed increases in cloud cover frequencies are added to the clear sky and cloud optical thickness effect, the higher all sky reduction in solar radiation in the United States can be explained. It is shown that solar radiation declined below cloud‐free sky because of the reduction of the cloud‐free fraction of the sky itself and because of the reduction of clear sky optical thickness. Solar radiation exhibits no significant changes below cloud‐covered sky because reduced cloud optical thickness is compensated by increased frequencies of hours with overcast skies.

Key concepts: Sky, Overcast, Cloud cover, Radiation, Cloud fraction, Environmental science, Atmospheric sciences, Diffuse sky radiation

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