The inter-annual variability of the dust aerosol presence over the Red Sea and the Persian Gulf is analysed over the period 2005–2015. Particular attention is paid to the variation in loading across the Red Sea, which has previously been shown to have a strong, seasonally dependent latitudinal gradient. Over the 11 years considered, the July mean 630 nm aerosol optical depth (AOD) derived from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) varies between 0.48 and 1.45 in the southern half of the Red Sea. In the north, the equivalent variation is between 0.22 and 0.66. The temporal and spatial pattern of variability captured by SEVIRI is also seen in AOD retrievals from the MODerate Imaging Spectroradiometer (MODIS), but there is...
Atmospheric aerosols affect public health, air quality, the earth's energy balance, and the hydrolog...
International audienceSatellite retrievals of atmospheric desert dust have the ability to capture th...
The Arabian Sea region $(4^{o} N-20^{o} N to 50^{o} E-78^{o} E)$ has a unique weather pattern on acc...
The inter-annual variability of the dust aerosol presence over the Red Sea and the Persian Gulf is a...
This study characterizes the spatiotemporal variability and relative contribution of different types...
Temporal and spatial variations in atmospheric dust over Saudi Arabia are studied for 2000-2010 usin...
We use the combined Dark Target/Deep Blue aerosol optical depth (AOD) satellite product of the moder...
International audienceThis work provides a comparison of satellite retrievals of Saharan desert dust...
Several long-term monitoring of aerosol datasets from the Moderate Resolution Imaging Spectroradiome...
The Arabian Sea region (4°N-20°N to 50°E-78°E) has a unique weather pattern on a...
International audienceFour aerosol optical depth retrieval algorithms over the Sahara Desert during ...
Atmospheric particulates are a significant forcing agent for the radiative energy budget of the Eart...
Atmospheric aerosols affect public health, air quality, the earth's energy balance, and the hydrolog...
International audienceSatellite retrievals of atmospheric desert dust have the ability to capture th...
The Arabian Sea region $(4^{o} N-20^{o} N to 50^{o} E-78^{o} E)$ has a unique weather pattern on acc...
The inter-annual variability of the dust aerosol presence over the Red Sea and the Persian Gulf is a...
This study characterizes the spatiotemporal variability and relative contribution of different types...
Temporal and spatial variations in atmospheric dust over Saudi Arabia are studied for 2000-2010 usin...
We use the combined Dark Target/Deep Blue aerosol optical depth (AOD) satellite product of the moder...
International audienceThis work provides a comparison of satellite retrievals of Saharan desert dust...
Several long-term monitoring of aerosol datasets from the Moderate Resolution Imaging Spectroradiome...
The Arabian Sea region (4°N-20°N to 50°E-78°E) has a unique weather pattern on a...
International audienceFour aerosol optical depth retrieval algorithms over the Sahara Desert during ...
Atmospheric particulates are a significant forcing agent for the radiative energy budget of the Eart...
Atmospheric aerosols affect public health, air quality, the earth's energy balance, and the hydrolog...
International audienceSatellite retrievals of atmospheric desert dust have the ability to capture th...
The Arabian Sea region $(4^{o} N-20^{o} N to 50^{o} E-78^{o} E)$ has a unique weather pattern on acc...