Aerosols comprise a critical portion of the Earth's climate due to their radiative properties. More emphasis is now being placed upon understanding radiative effects of aerosols on a regional scale. The primary goal of this research is to estimate the aerosol direct radiative effect (DRE) and examine its dynamical nature in the Southeastern U.S. based on satellite data obtained from the moderate-resolution imaging spectroradiometer (MODIS) and multi-angle imaging spectroradiometer (MISR) instruments onboard the Terra satellite from 2000 to 2011. This 12-year analysis utilizes satellite measurements of aerosol optical depth (AOD), surface albedo, cloud fraction, and single-scattering albedo over the Southeastern U.S. as inputs to a first-ord...
The main uncertainty in anthropogenic forcing of the Earth’s climate stems from pollution aerosols, ...
The fourth assessment report of the Intergovernmental Panel on Climate Change (IPCC) includes a comp...
Aerosols from biomass burning can alter the radiative balance of the Earth by reflecting and absorbi...
The southeastern U.S. is one of only a small number of regions worldwide which has not exhibited war...
In an effort to reduce uncertainties in the quantification of aerosol direct radiative forcing (ADRF...
Satellite data suggest that summertime aerosol optical depth (AOD) over the southeastern USA depends...
This study examines how aerosols measured from the ground and space over the US Southeast change tem...
Aerosols and their radiative properties play an integral part in understanding Earth’s climate...
Using internally consistent albedo, aerosol, cloud, and surface data from the Multiangle Imaging Spe...
The first part of the thesis assesses the aerosol direct radiative effect (ADRE) with a focus on gro...
Aerosol optical properties measured at Appalachian State University's co-located NASA AERONET and N...
International audienceAerosols affect the Earth's energy budget ''directly'' by scattering and absor...
International audienceAerosols affect the Earth's energy budget directly by scattering and absorbing...
This study investigated the performance of the fifth-generation Pennsylvania State University-Nation...
The direct radiative effect (DRE) of aerosols above clouds has been found to be significant over the...
The main uncertainty in anthropogenic forcing of the Earth’s climate stems from pollution aerosols, ...
The fourth assessment report of the Intergovernmental Panel on Climate Change (IPCC) includes a comp...
Aerosols from biomass burning can alter the radiative balance of the Earth by reflecting and absorbi...
The southeastern U.S. is one of only a small number of regions worldwide which has not exhibited war...
In an effort to reduce uncertainties in the quantification of aerosol direct radiative forcing (ADRF...
Satellite data suggest that summertime aerosol optical depth (AOD) over the southeastern USA depends...
This study examines how aerosols measured from the ground and space over the US Southeast change tem...
Aerosols and their radiative properties play an integral part in understanding Earth’s climate...
Using internally consistent albedo, aerosol, cloud, and surface data from the Multiangle Imaging Spe...
The first part of the thesis assesses the aerosol direct radiative effect (ADRE) with a focus on gro...
Aerosol optical properties measured at Appalachian State University's co-located NASA AERONET and N...
International audienceAerosols affect the Earth's energy budget ''directly'' by scattering and absor...
International audienceAerosols affect the Earth's energy budget directly by scattering and absorbing...
This study investigated the performance of the fifth-generation Pennsylvania State University-Nation...
The direct radiative effect (DRE) of aerosols above clouds has been found to be significant over the...
The main uncertainty in anthropogenic forcing of the Earth’s climate stems from pollution aerosols, ...
The fourth assessment report of the Intergovernmental Panel on Climate Change (IPCC) includes a comp...
Aerosols from biomass burning can alter the radiative balance of the Earth by reflecting and absorbi...