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논문 기본 정보

자료유형
학술저널
저자정보
Kacem Zereg (University of Batna) Amor Gama (CDER) Mounir Aksas (Higher National School of Renewable Energy) Neelam Rathore (Maharana Pratap University of Agriculture and Technology) Fatiha Yettou (CDER) Narayan Lal Panwar (Maharana Pratap University of Agriculture and Technology)
저널정보
대한환경공학회 Environmental Engineering Research Environmental Engineering Research 제27권 제6호
발행연도
2022.12
수록면
37 - 56 (20page)

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Many sites with high solar radiation face high dust loads that reduce energy generation by concentrated solar power plants. This review presents the attenuative impacts of atmospheric aerosols, as well as reflectivity losses due to soiling of solar reflectors, by covering both experimental investigations and numerical studies; along with presenting the theoretical background. The chemical nature of aerosols, and the physics of soiling and atmospheric extinction phenomena (scattering and absorption) are also reviewed. Suspended particles like aerosols result in atmospheric extinction of the solar radiation that reaches the concentrators, and the deposition of these particles on the solar reflectors provokes decreases up to 80% in their reflectivity, and thus enhances the cumulus of optical losses and the reduction of energy production. Even though dust affects both CSP and photovoltaics, CSP technologies suffer more losses. The impact of dust should be particularly considered during the planning phase of solar thermal plants, since its consequent reduction in energy output can be severe. While there have been multiple papers to review dust-related problems for PV, the present paper is the first literature review dedicated to the impact of soiling on concentrated solar power.

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ABSTRACT
1. Introduction
2. Literature Reviews of Dust Impact on CSP
3. Theory
4. Recent Research and Advances in Dust Impact on CSP
5. Effect of Dust Deposition and Climate Parameters on CSP Performancce
6. Mitigation Approaches
7. Summary
8. Conclusions
References

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UCI(KEPA) : I410-ECN-0101-2022-539-000210719