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    • 3. 发明专利
    • SOLAR ENERGY RECEIVER
    • BG65839B1
    • 2010-02-26
    • BG10882004
    • 2004-07-23
    • BENEKO VLADIMIR BENEV
    • BENEV ANDREYSTOYKOV ROUMENBENEV VLADIMIR
    • F24J2/50F24J2/04F24S23/77
    • The solar energy receiver is designed to absorb, retain and convert the solar radiation, in particular as a photothermal solar element which can be employed both in the traditional residential heating installations, and for heating of pools, for heating installations, for industrial needs û in drying installations and by other similar consumers. By it the dependence of receiving from the radiation falling angle is reduced, heating insulation is improved from the inlet side of the radiation, heat transfer to the system of discharging with a liquid heat carrier is improved. The solar energy receiver comprises a 3-dimensional grid (2) with cavities (3) and openings (4) from the direction of the solar radiation. On its opposite direction the grid is connected to a receiving element with an absorption surface (5) which has a system for conducting the received energy (5a). At least one of the cross section dimensions of the grid cavities is within 10 mm, and the depth of the grid (h) is at least 1.5 times as big as that dimension. The 3-dimensional grid (2) can simultaneously be a receiving element with an absorption surface (5), or the receiver should contain two 3-dimensional grids (2I) and 2II), the first one of which shall be of transparent plates, and the second will be a receiving element (5).
    • 10. 发明专利
    • SOLAR ENERGY RECEIVER
    • BG108820A
    • 2006-03-31
    • BG10882004
    • 2004-07-23
    • BENEKO VLADIMIR BENEV
    • BENEV ANDREYSTOYKOV ROUMENBENEV VLADIMIR
    • F24J2/50F24J2/04F24S23/77
    • The solar energy receiver is designed to absorb, retain and convert the solar radiation, in particular as a photothermal solar element which can be employed both in the traditional residential heating installations, and for heating of pools, for heating installations, for industrial needs - in drying installations and by other similar consumers. By it the dependence of receiving from the radiation falling angle is reduced, heating insulation is improved from the inlet side of the radiation, heat transfer to the system of discharging with a liquid heat carrier is improved. The solar energy receiver comprises a 3-dimensional grid (2) with cavities (3) and openings (4) from the direction of the solar radiation. On its opposite direction the grid is connected to a receiving element with an absorption surface (5) which has a system for conducting the received energy (5a). At least one of the cross section dimensions of the grid cavities is within 10 mm, and the depth of the grid (h) is at least 1.5 times as big as that dimension. The 3-dimensional grid (2) can simultaneously be a receiving element with an absorption surface (5), or the receiver should contain two 3-dimensional grids (2I) and 2II), the first one of which shall be of transparent plates, and the second will be a receiving element (5).