miercuri, 18 august 2010

Battery fototermoelectric


The luminous radiant energy and the thermic energy produced
by the isolated atomic systems is absorbed by the
battery fototermoelectric that transform it into electric current.
Photocell and thermoelectric conversion, used separately their performance is very low.
Photovoltaic conversion solution is to convert the union into a single thermoelectric conversion fototermoelectrica to have a higher overall yield.
Radiant light and heat energy can be absorbed and converted into electricity through photovoltaic conversion with the combination forming a thermoelectric battery fototermoelectrica.
Battery fototermoelectric consists of five levels of semiconductors arranged in cascade.
Starting from the place where light and heat absorption of radiant energy, the first two levels consist of: semiconductor silicon (Si), third in the semiconductor and silicon germanium (GeSi), fourth in semiconductor lead telluride (PbTe ) and fifth in the semiconductor bismuth telluride (Bi2Te3), all these semiconductors are provided with metal electrodes.
Light and heat are emitted simultaneously, the first two levels transform light into electricity and heating from the other three levels take the first two levels of heat, heat that extends to three levels. Heat is lost through cooling and gradually turn into electricity.
The combination of these two conversions would increase overall efficiency.

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