Preliminary insights into the potential pathway of the plane wreckage that washed up on Reunion Island have been provided by researchers at the National Oceanography Centre (NOC) in the UK.
If a plane crashed into the South East Indian Ocean, any debris floating on the surface could have ended up on Reunion Island by one of two possible scenarios, researchers said.
In the first scenario it would have initially been carried northwards in a large 'round-a-bout' system of currents in the South Indian Ocean - called a 'subtropical gyre'.
This westward flowing water moves across the entire Southern Indian Ocean at the same latitude as northern Madagascar but can be partly deflected towards Reunion when it meets the Mascarene Plateau near 60 degree East.
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The speed of this current varies, although it can reach up to 50 centimetres a second, researchers said.
An analysis of a global ocean simulation, provided by the NEMO model, gives rise to the second scenario.
In this situation it appears possible that the debris could have been carried more or less directly westwards by a complex pattern of swirling currents, which include features known as "eddies."
The likely timescales for these routes could be between one year for the more northerly route and two years for the directly westward route.
More detailed analysis is currently underway at the NOC, including the direct tracking of surface floating particles, to confirm the likelihoods of these pathways and timescales.
The NEMO ocean model was developed by an international consortium, including the NOC. The model provides full depth coverage of ocean currents, temperatures and salinities. It has also been used to track the movements of oil spills.
Professor Adrian New, an expert in Indian Ocean currents at the NOC, said that the discovery of the plane wreckage in Reunion might be consistent with a possible crash site in the South-East Indian Ocean though other crash sites cannot definitely be ruled out.
Massive search operations in the Indian Ocean have not yet found any wreckage of the Boeing 777 plane.