A 3D ray-tracing matrix method is employed for studying the effects of directional distribution of radiation sources on transmission coefficient of a transparent plate with a prismatic ridged surface. An optimized configuration is suggested for using a prismatic plate as the glazing cover of a solar collector. Promising application of the resulting properties is suggested for optimizing the efficiency of solar collectors, when their routine glassy window is replaced by a prismatic one.
Raghavi, A. (2020). Investigation of the Effects of Prismatic Against the Flat Cover Window for Solar Collectors Using a 3D Ray-tracing Matrix Method. (e6311). Journal Of Moden Research Physics, 5(1), e6311 https://doi.org/10.22034/jmrph.2020.6311
MLA
Raghavi, A. "Investigation of the Effects of Prismatic Against the Flat Cover Window for Solar Collectors Using a 3D Ray-tracing Matrix Method" .e6311 , Journal Of Moden Research Physics, 5, 1, 2020, e6311. doi: 10.22034/jmrph.2020.6311
HARVARD
Raghavi A. (2020). 'Investigation of the Effects of Prismatic Against the Flat Cover Window for Solar Collectors Using a 3D Ray-tracing Matrix Method', Journal Of Moden Research Physics, 5(1), e6311. doi: 10.22034/jmrph.2020.6311
CHICAGO
A. Raghavi, "Investigation of the Effects of Prismatic Against the Flat Cover Window for Solar Collectors Using a 3D Ray-tracing Matrix Method," Journal Of Moden Research Physics, 5 1 (2020): e6311, doi: 10.22034/jmrph.2020.6311
VANCOUVER
Raghavi A. Investigation of the Effects of Prismatic Against the Flat Cover Window for Solar Collectors Using a 3D Ray-tracing Matrix Method. JMRPH. 2020;5(1):e6311 (In Persian). doi: 10.22034/jmrph.2020.6311