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Centennial Total Solar Irradiance Variation
by
Dewitte, Steven
, Meftah, Mustapha
, Cornelis, Jan
in
Atmospheric and Oceanic Physics
/ Brightening
/ Climate change
/ Experiments
/ Irradiance
/ Magnetic fields
/ photometry
/ Physics
/ Radiation
/ Radiometers
/ regression analysis
/ Regression models
/ Root-mean-square errors
/ Solar energy
/ solar radiation
/ Sun
/ sunspot number
/ Sunspots
/ Time series
/ total solar irradiance
2022
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Centennial Total Solar Irradiance Variation
by
Dewitte, Steven
, Meftah, Mustapha
, Cornelis, Jan
in
Atmospheric and Oceanic Physics
/ Brightening
/ Climate change
/ Experiments
/ Irradiance
/ Magnetic fields
/ photometry
/ Physics
/ Radiation
/ Radiometers
/ regression analysis
/ Regression models
/ Root-mean-square errors
/ Solar energy
/ solar radiation
/ Sun
/ sunspot number
/ Sunspots
/ Time series
/ total solar irradiance
2022
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Do you wish to request the book?
Centennial Total Solar Irradiance Variation
by
Dewitte, Steven
, Meftah, Mustapha
, Cornelis, Jan
in
Atmospheric and Oceanic Physics
/ Brightening
/ Climate change
/ Experiments
/ Irradiance
/ Magnetic fields
/ photometry
/ Physics
/ Radiation
/ Radiometers
/ regression analysis
/ Regression models
/ Root-mean-square errors
/ Solar energy
/ solar radiation
/ Sun
/ sunspot number
/ Sunspots
/ Time series
/ total solar irradiance
2022
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Journal Article
Centennial Total Solar Irradiance Variation
2022
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Overview
Total Solar Irradiance (TSI) quantifies the solar energy received by the Earth and therefore is of direct relevance for a possible solar influence on climate change on Earth. We analyse the TSI space measurements from 1991 to 2021, and we derive a regression model that reproduces the measured daily TSI variations with a Root Mean Square Error (RMSE) of 0.17 W/m2. The daily TSI regression model uses the MgII core to wing ratio as a facular brightening proxy and the Photometric Sunspot Index (PSI) as a measure of sunspot darkening. We reconstruct the annual mean TSI backwards to 1700 based on the Sunspot Number (SN), calibrated on the space measurements with an RMSE of 0.086 W/m2. The analysis of the 11 year running mean TSI reconstruction confirms the existence of a 105 year Gleissberg cycle. The TSI level of the current grand minimum is only about 0.15 W/m2 higher than the TSI level of the grand minimum in the beginning of the 18th century.
Publisher
MDPI AG,MDPI
Subject
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