domingo, 18 de noviembre de 2012

Energia eólica : servirá la innovación?

Antes   aspas,  ahora   velas?

 
Según el inventor tunecino es significativo la captura del 80% de la energía cinética de la vela frente al 40 % de la aspas, la disminución del 50% de la inversión,  la disminución en el costo por eliminarse las aspas, el cubo y la caja reductora. Es silencioso y  no atenta con las rutas de  pájaros. Está patentado en el año 2.012 y espera por inversionistas.

http://www.scidev.net/es/middle-east-and-north-africa/news/turbina-a-vela-brindar-a-energ-a-e-lica-m-s-barata.html
 
Sail-inspired turbine promises cheaper wind energy

Nébil Zaghdoud

5 noviembre 2012 | EN
The new turbine
The sail-inspired wind turbine may capture more energy
Saphon Energy
[TUNIS] A Tunisian invention that harvests wind energy through adesign inspired by sailboats promises cheaper, more efficient wind energy.
The bladeless wind turbine, the Saphonian, named after the wind divinity that was worshipped by the ancient Carthaginians, also promises to be more environmentally friendly than existing wind turbines that produce noise and kill birds through their blade rotation.
Instead of rotating blades, the Saphonian's sail-shaped body collects the kinetic energy of the wind, Anis Aouini, the Saphonian's inventor, told SciDev.Net.
He explained that the resulting mechanical energy moves pistons which generate hydraulic pressure that can be stored in a hydraulic accumulator or converted into electricity.
"This is not the first bladeless wind turbine, but we thought outside the box: the initial idea came from sails — the only human system that can capture and convert the bulk of the wind's power into mechanical energy," said Aouini.
An average wind turbine captures only 30 to 40 per cent of the wind's kinetic energy, while the Saphonian can capture up to 80 per cent, according to Aouini.
Hassine Labaied, chief executive of Saphon Energy, the start-up energy company established to get the turbine to market, said the Saphonian reduces the aerodynamic and mechanical energy losses associated with rotating-blade turbines.
"Our second generation prototype is 2.3 times more efficient, and costs nearly half the price of its predecessors [conventional wind turbines]. It discards the most expensive components in a traditional wind turbine, which are the blades, hub and gearbox," said Labaied.
Aouini and Labaied patented the technology in Tunisia in September 2010, and received an international patent in March 2012. Saphon Energy is now looking for a partnership with a manufacturer to deploy the technology worldwide.
"We are negotiating with a number of international companies that produce renewable energy technology, and will finalise this by the end of this year," said Labaied. He estimated that it would take up to two years until the commercial product reaches the market.
Ali Kanzari, a renewable energy expert and director-general of Solar Energy Systems, told SciDev.Net that the Saphonian "seems to be a radical and economically viable alternative to bladed turbines". However, he added that "the manufacturing step is important as it will determine how the market will accept it".
"The electricity produced through wind in Tunisia represents five per cent of total electricity production in the country," Ayadi Ben Aissa, former chief executive of the Tunisian Society of Electricity and Gas (STEG), told SciDev.Net.
He said that using the Saphonian technology could produce up to 20 per cent of Tunisia's electricity from wind in the medium term.


See below for a video about Saphonian wind turbine:  (Entrar en el enlace)
 

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