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Indoor Soil Deposition Chamber: Evaluating Effectiveness of Antisoiling Coatings
Author(s) -
P.M. Ravi,
Mathew Muller,
Lin Simpson,
Darshan Choudhary,
Shanmukha Srinivas Mantha,
Sai Subramanian,
Shalaim Virkar,
Telia Curtis,
GovindaSamy TamizhMani
Publication year - 2018
Publication title -
ieee journal of photovoltaics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.023
H-Index - 72
eISSN - 2156-3403
pISSN - 2156-3381
DOI - 10.1109/jphotov.2018.2877021
Subject(s) - transmittance , materials science , deposition (geology) , environmental science , coating , photovoltaic system , humidity , remote sensing , composite material , optoelectronics , meteorology , paleontology , sediment , physics , ecology , biology , geology
An indoor soil deposition method has been developed to simulate natural soil deposition on glass coupons or one-cell and multicell photovoltaic (PV) modules. This method uses variable ambient humidity, coupon/module temperature, and dust composition within a single custom-made chamber to create a natural and uniform soil deposition layer. Antisoiling (AS) coatings from two different manufacturers were applied on two one-cell monocrystalline silicon modules. Three layers of Arizona road dust have been deposited on the one-cell modules with AS coatings and an uncoated one-cell reference module at varied humidity levels. The soiled modules were exposed to an open-circuit subsonic wind tunnel at varying speeds and the effectiveness of AS coatings have been quantified using the transmittance gain. Transmittance loss resulting from the AS coating has been measured and compared with the transmittance of the uncoated reference module using a reflectance spectrophotometer. Reflectance measurements have also been taken to compare the transmittance loss of Arizona road dust and soil collected from PV modules’ superstrates. The soiled one-cell modules were then exposed to rain from a rain simulator. The transmittance gain due to rain exposure is quantified using a rain gain and rain coefficient. These tests cumulatively may be used to help develop a test standard for evaluating the effectiveness of AS coatings.

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