Geophysical Research Letters · 2008 · 57 citations · 24 references
EngineeringAir QualityEarth ScienceAtmospheric OpticsAerosol PropertiesHigh Temperature AerosolAerosol TransportAtmospheric ScienceMicrometeorologyEnhanced AerosolRadiative Transfer ModelUrban ClimateAtmospheric SensingUrban EnvironmentAerosol Chemical CompositionAerosol FormationAtmospheric InteractionRadiation MeasurementAtmospheric RadiationAtmospheric TransportAir PollutionRadiative Forcing
Collocated measurements of sun/sky radiance, aerosol chemical composition and radiative fluxes have been utilized to estimate longwave aerosol radiative forcing over Pune, an Indian urban site during dry winter [Dec2004 to Feb2005] by two methods. Hybrid method which uses observed downwelling and modeled upwelling longwave fluxes for different aerosol loadings yielded a surface forcing of 9.4 Wm −2 . Model approach includes utilization of skyradiometer derived spectral aerosol optical properties in the visible and near infra‐red wavelengths, modeled aerosol properties in 1.2‐40 μ m using observed soot and chemical composition data, MODIS water vapor and TOMS column ozone in a radiative transfer model. Estimates from model method showed longwave enhancement of 6.5 and 8.2 Wm −2 at the surface with tropical model atmosphere and temporally varying profiles of temperature and humidity, respectively. Study reveals that about 25% of the aerosol shortwave cooling is being compensated by increase in longwave radiation due to aerosol absorption.
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Aerosols, Climate, and the Hydrological Cycle
V. Ramanathan, Paul J. Crutzen, J. T. Kiehl et al. · Science · 2001 · 4.1K citations
P. Ricchiazzi, Shiren Yang, Catherine Gautier et al. · Bulletin of the American Meteorological Society · 1998 · 1.6K citations · Full text