The impact of humidity above stratiform clouds on indirect aerosol climate forcing
Top Cited Papers
- 1 December 2004
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 432 (7020) , 1014-1017
- https://doi.org/10.1038/nature03174
Abstract
Some of the global warming from anthropogenic greenhouse gases is offset by increased reflection of solar radiation by clouds with smaller droplets that form in air polluted with aerosol particles that serve as cloud condensation nuclei1. The resulting cooling tendency, termed the indirect aerosol forcing, is thought to be comparable in magnitude to the forcing by anthropogenic CO2, but it is difficult to estimate because the physical processes that determine global aerosol and cloud populations are poorly understood2. Smaller cloud droplets not only reflect sunlight more effectively, but also inhibit precipitation, which is expected to result in increased cloud water3,4. Such an increase in cloud water would result in even more reflective clouds, further increasing the indirect forcing. Marine boundary-layer clouds polluted by aerosol particles, however, are not generally observed to hold more water5,6,7. Here we simulate stratocumulus clouds with a fluid dynamics model that includes detailed treatments of cloud microphysics and radiative transfer. Our simulations show that the response of cloud water to suppression of precipitation from increased droplet concentrations is determined by a competition between moistening from decreased surface precipitation and drying from increased entrainment of overlying air. Only when the overlying air is humid or droplet concentrations are very low does sufficient precipitation reach the surface to allow cloud water to increase with droplet concentrations. Otherwise, the response of cloud water to aerosol-induced suppression of precipitation is dominated by enhanced entrainment of overlying dry air. In this scenario, cloud water is reduced as droplet concentrations increase, which diminishes the indirect climate forcing.Keywords
This publication has 31 references indexed in Scilit:
- Evaluation of Large-Eddy Simulations via Observations of Nocturnal Marine StratocumulusMonthly Weather Review, 2005
- Enhancement of cloud cover and suppression of nocturnal drizzle in stratocumulus polluted by hazeGeophysical Research Letters, 2003
- Simulations of aerosol‐cloud‐dynamical feedbacks resulting from entrainment of aerosol into the marine boundary layer during the Atlantic Stratocumulus Transition ExperimentJournal of Geophysical Research: Atmospheres, 2002
- A Bayesian algorithm for the retrieval of liquid water cloud properties from microwave radiometer and millimeter radar dataJournal of Geophysical Research: Atmospheres, 2002
- Limits to the Aerosol Indirect Radiative Effect Derived from Observations of Ship TracksJournal of the Atmospheric Sciences, 2002
- Numerical modeling of ship tracks produced by injections of cloud condensation nuclei into marine stratiform cloudsJournal of Geophysical Research: Atmospheres, 1995
- Cloud-Top Entrainment Instability through Small-Scale Mixing and Its Parameterization in Numerical ModelsJournal of the Atmospheric Sciences, 1990
- Direct and Remote Sensing Observations of the Effects of Ships on CloudsScience, 1989
- Cloud Top Entrainment InstabilityJournal of the Atmospheric Sciences, 1980
- Pollution and the planetary albedoAtmospheric Environment (1967), 1974