COGENERATION PHOTOELECTRIC THERMAL SYSTEM Russian patent published in 2014 - IPC F24J2/42 F24J2/04 

Abstract RU 2509268 C2

FIELD: power engineering.

SUBSTANCE: photoelectric thermal system comprises at least one solar heat collector, a pipeline of liquid supply into a solar heat collector. a pipeline of liquid drain from the solar heat collector into an accumulator tank (thermos). At the same time the pipeline of liquid supply into the solar heat collector is connected at least with one photoelectric heat module arranged at the level that is lower than the solar heat collector and connected in series with it. Supply of the liquid into the photoelectric heat module is carried out via the pipeline from the discharge tank installed above the level of the solar heat collector, at least into one of pipelines a solenoid valve is mounted, there is at least one heat relay with a sensor individual for the photoelectric heat module or the solar heat collector. Control contacts of the solenoid valve are connected and switched with the help of a heat relay, at the same time the solar heat collector and the photoelectric heat module are made in the form of receivers of solar radiation, which represent reservoirs that have the shape of a rectangular parallelepiped, and on the working surface of the reservoir of the photoelectric heat module there is a battery of solar elements, inside of the reservoirs of the photoelectric heat module and the solar heat collector in parallel to the working surface with a gap relative to it there is a partition that does not reach the upper and lower wall of the reservoir.

EFFECT: usage of the invention makes it possible to generate electric energy and thermal energy, which will make it possible to provide for power supply of facilities of agricultural and individual purpose.

4 cl, 6 dwg

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RU 2 509 268 C2

Authors

Strebkov Dmitrij Semenovich

Kharchenko Valerij Vladimirovich

Tikhonov Pavel Valentinovich

Tikhonov Anton Valentinovich

Nikitin Boris Andreevich

Sychev Arsenij Olegovich

Dates

2014-03-10Published

2012-04-28Filed