SH33G:
Solar Radiative Variability: From Minutes to Millennia—The Sun's Influence on the Earth's Space Environment, Atmosphere, and Climate Posters
SH33G:
Solar Radiative Variability: From Minutes to Millennia—The Sun's Influence on the Earth's Space Environment, Atmosphere, and Climate Posters
Solar Radiative Variability: From Minutes to Millennia—The Sun's Influence on the Earth's Space Environment, Atmosphere, and Climate Posters
Submit an Abstract to this Session
Session ID#: 48481
Session Description:
Variability of the incoming solar irradiance and its effects on the terrestrial environment and climate have received wide attention in recent years. There is a continuous effort to reduce measurement uncertainties of the total and spectral solar irradiances. Physical and empirical modelling have also made considerable progress in reconstructing accurate and reliable records. At the same time, models and observations have been extensively used to characterize the influence of solar irradiance variability on Earth's atmosphere and climate. This session invites abstracts on measurements and models of solar spectral and total irradiance on all time scales - including the recently launched Total and Spectral Solar Irradiance Sensor (TSIS-1) - as well as abstracts on the response of the surface, atmosphere and the heliosphere to solar radiative forcing. Abstracts focused on comparisons of surface and atmospheric effects to different solar radiative forcing are particularly welcome.
Primary Convener: Martin A Snow, University of Colorado at Boulder, Boulder, CO, United States
Conveners: Peter Pilewskie, University of Colorado, Laboratory for Atmospheric and Space Physics, Boulder, United States, Natalie Krivova, Logan, UT, United States and Odele Coddington, University of Colorado, Laboratory for Atmospheric and Space Physics, Boulder, CO, United States
Primary Liaison: Martin A Snow, University of Colorado Boulder, Boulder, CO, United States
Chairs: Martin A Snow, University of Colorado Boulder, Boulder, CO, United States and Odele Coddington, University of Colorado, Laboratory for Atmospheric and Space Physics, Boulder, CO, United States
OSPA Liaison: Martin A Snow, University of Colorado Boulder, Boulder, CO, United States
Index Terms:
1650 Solar variability [GLOBAL CHANGE]
3305 Climate change and variability [ATMOSPHERIC PROCESSES]
7536 Solar activity cycle [SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY]
7538 Solar irradiance [SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY]
Abstracts Submitted to this Session:
The Sensitivity of Empirical Regression Models of Solar Irradiance to Underlying Methodology (420459)
See more of: SPA-Solar and Heliospheric Physics
