US 11,863,121 B2
Complex energy generation device using sunlight and solar heat
Myeong Geon Sagong, Gyeongsangbuk-do (KR)
Assigned to KUKDONG ENERGY Corp, Gyeongsangbuk-do (KR)
Filed by KUKDONG ENERGY Corp, Gyeongsangbuk-do (KR)
Filed on Aug. 6, 2021, as Appl. No. 17/395,472.
Claims priority of application No. 10-2021-0001872 (KR), filed on Jan. 7, 2021.
Prior Publication US 2022/0216828 A1, Jul. 7, 2022
Int. Cl. H02S 40/44 (2014.01); H02S 40/42 (2014.01); F24S 80/30 (2018.01); F24S 10/50 (2018.01); F24S 20/00 (2018.01); F24D 11/00 (2022.01)
CPC H02S 40/44 (2014.12) [F24S 10/50 (2018.05); F24S 80/30 (2018.05); H02S 40/425 (2014.12); F24D 11/003 (2013.01); F24S 2020/17 (2018.05)] 4 Claims
OG exemplary drawing
 
1. A complex energy generation device using sunlight and solar heat, the complex energy generation device comprising:
a heat storage tube having, at a first side portion thereof, an inlet portion into which heat medium oil flows, and having, at a second side portion thereof, an outlet portion from which the heat medium oil is discharged, the heat storage tube having a slit at a lower surface thereof along a longitudinal direction thereof;
a solar panel having a plurality of solar cells on a front surface thereof; and
a single heat radiation panel having an upper portion inserted into the heat storage tube through the slit of the heat storage tube while sealing the slit, and a lower portion laminated on a rear surface of the solar panel, wherein only the single heat radiation panel is included in the heat storage tube,
wherein an upper end surface of the heat radiation panel inserted in the heat storage tube is formed in a curved shape so as to contact with a portion within an inner surface of the heat storage tube, and first and second ends of the heat radiation panel inserted in the heat storage tube are configured to have streamlined cross-sections,
wherein an angle forming the curved shape of the upper end surface of the heat radiation panel corresponds to an angle forming the portion within the inner surface of the heat storage tube,
wherein the curved shape of the upper end surface of the single heat radiation panel is evenly flat in a horizontal direction from one end to the other end of the single heat radiation panel so that an entirety of curved shape of the upper end surface of the single heat radiation panel is in direct contact with the inner surface of the heat storage tube.