vix.ing · top · new · best · stats · spec

The albedo of Earth

2015/01/26 by Graeme L. Stephens, Denis O'Brien, Peter Webster +3 · 2 citations
Environmental Science · Earth and Planetary Sciences · Chemistry · #Atmospheric and Environmental Gas Dynamics #Atmospheric Ozone and Climate #Atmospheric chemistry and aerosols #Albedo (alchemy) #Equator #Atmospheric sciences #Flux (metallurgy) #Earth's energy budget #Environmental science #Atmosphere (unit) #Physics #Latitude #Geology #Meteorology #Astronomy #Chemistry

paper · doi:10.1002/2014rg000449

openalex publication_date 2015/01/26 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

Abstract The fraction of the incoming solar energy scattered by Earth back to space is referred to as the planetary albedo. This reflected energy is a fundamental component of the Earth's energy balance, and the processes that govern its magnitude, distribution, and variability shape Earth's climate and climate change. We review our understanding of Earth's albedo as it has progressed to the current time and provide a global perspective of our understanding of the processes that define it. Joint analyses of surface solar flux data that are a complicated mix of measurements and model calculations with top‐of‐atmosphere (TOA) flux measurements from current orbiting satellites yield a number of surprising results including (i) the Northern and Southern Hemispheres (NH, SH) reflect the same amount of sunlight within ~ 0.2 W m −2 . This symmetry is achieved by increased reflection from SH clouds offsetting precisely the greater reflection from the NH land masses. (ii) The albedo of Earth appears to be highly buffered on hemispheric and global scales as highlighted by both the hemispheric symmetry and a remarkably small interannual variability of reflected solar flux (~0.2% of the annual mean flux). We show how clouds provide the necessary degrees of freedom to modulate the Earth's albedo setting the hemispheric symmetry. We also show that current climate models lack this same degree of hemispheric symmetry and regulation by clouds. The relevance of this hemispheric symmetry to the heat transport across the equator is discussed.

Citations

Cited by

Related