The effects of anthropogenic particulate emissions from ships on the radiative, microphysical, and chemical properties of m(oderately polluted marine stratiform clouds are examined. A case study of two ships in the same air mass is presented where one of the vessels caused a discernible ship track while the other did not. In situ measurements of cloud droplet size distributions, liquid water content, and cloud radiative properties, as well as aerosol size distributions (outside cloud, interstitial, and cloud droplet residual particles) and aerosol chemistry, are presented. These are related to measurements of cloud radiative properties. The differences between the aerosol in the two ship plumes are discussed; these indicate that combustion-...
The emissions from anthropogenic sources are able to change cloud optical properties and can affect ...
The response of already polluted marine stratocumulus to additional particles was examined by studyi...
It has long been known that cloud droplet concentrations are strongly influenced by cloud condensati...
The effects of anthropogenic particulate emissions from ships on the radiative, microphysical, and c...
The effects of anthropogenic particulate emissions from ships on the radiative, microphysical, and c...
A case study of the effects of ship emissions on the microphysical, radiative, and chemical properti...
A case study of the effects of ship emissions on the microphysical, radiative, and chemical properti...
The influence of anthropogenic aerosols, in the form of ship exhaust effluent, on the microphysics a...
International audienceShip tracks are a natural laboratory to isolate the effect of anthropogenic ae...
Anomalously high reflectivity tracks in stratus and stratocumulus sheets associated with ships (know...
Ship-track clouds are marine boundary layer clouds that form behind ocean ships and are observed fro...
Modifications of existing clouds by the exhaust of ships are well-known but inadequately quantified ...
Graduation date: 2011Ship tracks have proven to be an ideal laboratory for studying the response of ...
The emissions from anthropogenic sources are able to change cloud optical properties and can affect ...
Ship tracks are regarded as the most obvious manifestations of the effect of anthropogenic aerosol p...
The emissions from anthropogenic sources are able to change cloud optical properties and can affect ...
The response of already polluted marine stratocumulus to additional particles was examined by studyi...
It has long been known that cloud droplet concentrations are strongly influenced by cloud condensati...
The effects of anthropogenic particulate emissions from ships on the radiative, microphysical, and c...
The effects of anthropogenic particulate emissions from ships on the radiative, microphysical, and c...
A case study of the effects of ship emissions on the microphysical, radiative, and chemical properti...
A case study of the effects of ship emissions on the microphysical, radiative, and chemical properti...
The influence of anthropogenic aerosols, in the form of ship exhaust effluent, on the microphysics a...
International audienceShip tracks are a natural laboratory to isolate the effect of anthropogenic ae...
Anomalously high reflectivity tracks in stratus and stratocumulus sheets associated with ships (know...
Ship-track clouds are marine boundary layer clouds that form behind ocean ships and are observed fro...
Modifications of existing clouds by the exhaust of ships are well-known but inadequately quantified ...
Graduation date: 2011Ship tracks have proven to be an ideal laboratory for studying the response of ...
The emissions from anthropogenic sources are able to change cloud optical properties and can affect ...
Ship tracks are regarded as the most obvious manifestations of the effect of anthropogenic aerosol p...
The emissions from anthropogenic sources are able to change cloud optical properties and can affect ...
The response of already polluted marine stratocumulus to additional particles was examined by studyi...
It has long been known that cloud droplet concentrations are strongly influenced by cloud condensati...