FIELD: electrical engineering and solar engineering.
SUBSTANCE: invention relates to the fields of electrical engineering and solar engineering, in particular to solar power modules built into buildings. The effect is achieved by the fact that in the proposed solar power module, built into the facade of the building, made in the form of lamellas containing a protective glass coating, switched solar cells and a sun tracking device, on the working side of each lamella over the entire working surface area in thermal contact with a protective glass a sealed chamber made of transparent material is fixed by the shell, connected to the pump through a heat-insulated pipeline to the heating system of the building for pumping a coolant transparent to solar radiation, the angle of the sun's height h, the angle of inclination of the lamellae α, the width of the lamellae l, the minimum distance between the lamellae d are related by the ratio: h=2α+arctg(sinα/(d/l-cosα)) – 180°, where l is the width of the lamellas; d is the minimum distance between the lamellas; h is the angle of the sun; α is the angle of inclination of the lamellas relative to the entrance surface.
EFFECT: increasing the utilization factor of the installed capacity, increasing the efficiency of solar energy conversion, reducing heat losses and increasing the average annual heat production.
2 cl, 3 dwg
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Authors
Dates
2021-12-17—Published
2021-05-27—Filed