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Cloud Formation Due to Jet Vapour Trails can Block Sunshine for Over 20,000 Square Miles in Britain

by Savitha C Muppala on  December 2, 2009 at 1:20 PM Environmental Health   - G J E 4
 Cloud Formation Due to Jet Vapour Trails can Block Sunshine for Over 20,000 Square Miles in Britain
A recent research conducted by UK's Met Office has pointed out that vapour trails by jet aircraft can cause cloud formation, capable of blocking sunshine for over 20,000 square miles in Britain.
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According to a report in the Telegraph, analysis of contrails from one large military aircraft circling over the North Sea showed the creation of a thin layer of cloud that, at its peak, covered an area of more than 20,000 square miles.

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The Met Office research suggested that the collective impact of hundreds of vapour trails can cause a blanket of thin cloud, reducing sunshine for millions who live under busy flight paths.

Contrails, which are clouds of condensed water vapour and soot particles made by the exhaust of jet engines, sometimes disperse within minutes, but can also be present in the sky for many hours.

They can also act as a catalyst for the formation of further wispy cirrus cloud.

Globally, vapour trails are thought to cut sunshine levels by less than one per cent, but this figure could rise to 10 per cent in areas under busy air corridors, such as the south-east of England.

The Met Office analysis was based on observations of a single military Awacs aircraft circling over the North Sea on a sunny day earlier this year.

Researchers had expected high-level winds to disperse its contrails, but instead, they appeared to attract more clouds that continued to grow as they were blown southwards until eventually they formed a hazy high-level blanket of cirrus cloud across southeast England.

According to Jim Haywood, the Met Office's aerosol research manager who led the new study, "At its peak the resulting cirrus cloud covered an area of more than 20,000 square miles."

"Such clouds are normally short-lived but, depending on atmospheric conditions, they can last much longer," he added.

It is thought that low temperatures at high altitudes can cause ice crystals in the vapour to act as 'nuclei' for condensation of more water, resulting in more cloud.

Haywood said that aviation-induced cirrus clouds had both a cooling effect, because of sunlight reflected back into space, and a warming effect, because of trapped heat.

"Studies show that, overall, the warming effect is stronger so aviation-induced clouds are helping to warm the planet," he said.

Source: ANI
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