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Шинэ нарны бүтээгдэхүүнүүд 95 хувь хүртэл гэрлийн энергийг авна
Өнөөгийн нарны хавтангуудын гол асуудал нь гэрлийн энергийн дөнгөж 20 хүртэл хувийг л ашиглах боломжтой байгаа бүтээмжийн асуудал. Харин одоо Миссурийн Их Сургуулийн инженер гэрлийн энергийг 90%-аас дээш ашиглах боломжтой уян хавтанг бүтээсэн ба үүнийхээ хэрэглэгчдэд зориулсан хувилбарыг 5 жилийн дотор бүтээх төлөвлөгөөтэй байгаа гэнэ.
Patrick Pinhero, an associate professor in the MU Chemical Engineering Department, says energy generated using traditional photovoltaic (PV) methods of solar collection is inefficient and neglects much of the available solar electromagnetic (sunlight) spectrum. The device his team has developed -- essentially a thin, moldable sheet of small antennas called nantenna -- can harvest the heat from industrial processes and convert it into usable electricity. Their ambition is to extend this concept to a direct solar facing nantenna device capable of collecting solar irradiation in the near infrared and optical regions of the solar spectrum.

Working with his former team at the Idaho National Laboratory and Garrett Moddel, an electrical engineering professor at the University of Colorado, Pinhero and his team have now developed a way to extract electricity from the collected heat and sunlight using special high-speed electrical circuitry. This team also partners with Dennis Slafer of MicroContinuum, Inc., of Cambridge, Mass., to immediately port laboratory bench-scale technologies into manufacturable devices that can be inexpensively mass-produced.

"Our overall goal is to collect and utilize as much solar energy as is theoretically possible and bring it to the commercial market in an inexpensive package that is accessible to everyone," Pinhero said. "If successful, this product will put us orders of magnitudes ahead of the current solar energy technologies we have available to us today."

As part of a rollout plan, the team is securing funding from the U.S. Department of Energy and private investors. The second phase features an energy-harvesting device for existing industrial infrastructure, including heat-process factories and solar farms.

Within five years, the research team believes they will have a product that complements conventional PV solar panels. Because it's a flexible film, Pinhero believes it could be incorporated into roof shingle products, or be custom-made to power vehicles.

Once the funding is secure, Pinhero envisions several commercial product spin-offs, including infrared (IR) detection. These include improved contraband-identifying products for airports and the military, optical computing, and infrared line-of-sight telecommunications.

A study on the design and manufacturing process was published in the Journal of Solar Energy Engineering.


Эх сурвалж:
http://www.sciencedaily.com/releases/2011/05/110516181339.htm


Нийтлэгдсэн: 2011-07-03 - 00:02
сурах чигийг эрхэм болговоос хандах зүг өөрөө тогтоно гдг билүү...
AmonRa хэзээ бичсэн: 00:30, 2011-07-04 | Холбоос | |
Яг энэ чиглэлийн судалгаа хийдэг салбарууддаа төрөөс бодлоготойгоор дэмжээд, эсвэл өндөр шагнал зарлаад уралдаан энэ тэр зохиовол. Хэрэв тэгвэл шууд дэлхийн хэмжээний асуудал яригдана, бараг Нобель өгсөн ч буруудахгүй биз баярлах
Алмас хэзээ бичсэн: 21:48, 2011-07-03 | Холбоос | |
Манай ТИС-ийнханд энэ даалгавар атгуулаад, энэ чиглэлээр зүтгүүлбэл бүтэхгүй ч юм биш дээ, айн.
Уул нь ШУХ бол улсын хөгжлийн манлайд баймаар юм. Манайд салхи нь байна, нар нь байна. Баялаг мөнөөс мөн.
AmonRa хэзээ бичсэн: 19:38, 2011-07-03 | Холбоос | |
гайхалтай мэдээлэл байна
баярлалаа (зочин) хэзээ бичсэн: 13:55, 2011-07-03 | Холбоос | |



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