Quantifying the role of solar radiative forcing over the 20th century |
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Authors: | Shlomi Ziskin Nir J. Shaviv |
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Affiliation: | Racah Institute of Physics, Hebrew University of Jerusalem, Giv’at Ram, Jerusalem 91904, Israel |
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Abstract: | The 20th century temperature anomaly record is reproduced using an energy balance model, with a diffusive deep ocean. The model takes into account all the standard radiative forcings, and in addition the possibility of a non-thermal solar component. The model is parameterized and then optimized to produce the most likely values for the climate parameters and radiative forcings which reproduce the 20th century global warming. We find that the best fit is obtained with a negligible net feedback. We also show that a non-thermal solar component is necessarily present, indicating that the total solar contribution to the 20th century global warming, of ΔTsolar = 0.27 ± 0.07 °C, is much larger than can be expected from variation in the total solar irradiance alone. However, we also find that the largest contribution to the 20th century warming comes from anthropogenic sources, with ΔTman = 0.42 ± 0.11 °C. |
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Keywords: | Solar variability impact Global climate Climate modeling |
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