Abstract

Industrial heaters nowadays work on renewable energy concepts and one of the important green energy sources is solar energy and we have used solar energy to design industrial heaters. The solar absorber converts the solar energy into heat which is used for industrial heaters. We developed a new solar absorber construction with three different layers by using different materials for each layer construction. Aluminium (Al) is for the top (resonator) layer, iron (III) oxide (Fe2O3) is for the middle (substrate), and silicon is used in the ground (based) layer respectively. A thin graphene layer is constructed between the Al resonator and the Fe2O3 substrate sections to develop better absorption by this design. In the wavelength range (μm) of 1.86 and 3, the explored absorption rate is 95.43 % with a 1740 nm bandwidth. The absorption rate performs above 97 % (97.23 %) at a 540 nm bandwidth with a wavelength (μm) difference between 1.96 and 2.5. The overall absorption for design explores 91.23 % (greater than 90 %) with a 2800 nm bandwidth range by the wavelength contribution from 0.2 to 3 μm. To highlight the explored amounts in variation, the four high wavelengths (in micrometers) are selected with λ1 = 0.45, λ2 = 1.1, λ3 = 2.1, and λ4 = 2.5 respectively. Concerning the presentation of this design, the construction steps from the beginning to the complete stage distribution, Air Mass (AM) exploration and equations, parameter analysis with the respective color extractions, polarization situation by changing incident angle (degree) from 0 to 80, electric and magnetic field analysis section, and a comparison table will be included in this work. This design can be achieved in the development of renewable energy such as the large amount of electricity generation by solar energy (green energy) systems, the process of heating and cooling systems of water, and multiple transportation systems.

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