FIELD: power engineering.
SUBSTANCE: invention relates to conversion of solar energy into electrical energy, primarily to design of solar power plants. In solar power plant double-sided solar modules are installed on horizontal surface in equatorial area from 30° south latitude up to 30° north latitude in meridional direction with orientation of working surface to east and west, between rows of double-sided solar modules in meridional direction additional supports are installed, on supports for double-sided solar modules and on additional supports there are two groups of solar energy reflectors with reflection coefficient of 0.8–0.95 and with a two-sided angle between them γ=120–180°, dimensions of solar energy reflectors are equal to distance between supports, solar energy reflectors are fixed at corners on supports, and distance l between rows of double-sided solar modules and height h of two-sided solar modules are connected by ratio given in the claim, length L of solar energy reflectors in meridional direction and width D in latitudinal direction are also determined by design formula. In compliance with second version, double-sided solar modules are installed on inclined surface in area of 30–90° south latitude and 30–90° north latitude, inclined to the south in the northern hemisphere and north in the southern hemisphere at an angle of β=ϕ-Δ,where ϕ is latitude, Δ is deviation, Δ=0–24°, double-sided solar modules are installed in meridional direction with orientation of working surface to east and west, between rows of double-sided solar modules in meridional direction additional supports are installed, on supports for double-sided solar modules and on additional supports there are two groups of solar energy reflectors with reflection coefficient of 0.8–0.95 and with a two-sided angle between them γ=120–180°, sizes of solar energy reflectors are equal to distance between supports, solar energy reflectors are fixed at corners on supports.
EFFECT: increase of annual electric power production.
10 cl, 4 dwg, 1 tbl
| Title | Year | Author | Number | 
|---|---|---|---|
| SOLAR HOUSE | 2018 | 
 | RU2694066C1 | 
| SUNNY HOUSE | 2019 | 
 | RU2730544C1 | 
| SOLAR HOUSE | 2021 | 
 | RU2755204C1 | 
| SOLAR HYBRID POWER INSTALLATION FOR BUILDINGS | 2021 | 
 | RU2755657C1 | 
| SOLAR POWER PLANT | 2006 | 
 | RU2303205C1 | 
| SOLAR MODULE WITH CONCENTRATOR | 2000 | 
 | RU2172903C1 | 
| SOLAR MODULE WITH CONCENTRATOR (VERSIONS) AND METHOD OF ITS MANUFACTURING | 2011 | 
 | RU2503895C2 | 
| HYBRID SOLAR MODULE | 2021 | 
 | RU2763781C1 | 
| COGENERATION SOLAR TILE | 2022 | 
 | RU2799691C1 | 
| SOLAR HOUSE (VERSIONS) | 2007 | 
 | RU2338129C1 | 
Authors
Dates
2019-10-07—Published
2018-10-24—Filed