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Nazmi Sellami
Researcher at Robert Gordon University
Publications - 55
Citations - 1215
Nazmi Sellami is an academic researcher from Robert Gordon University. The author has contributed to research in topics: Photovoltaic system & Concentrator. The author has an hindex of 18, co-authored 50 publications receiving 940 citations. Previous affiliations of Nazmi Sellami include Glasgow Caledonian University & University of Exeter.
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Journal ArticleDOI
Optical efficiency study of PV Crossed Compound Parabolic Concentrator
Nazmi Sellami,Tapas K. Mallick +1 more
TL;DR: In this article, a 3D ray trace code has been developed using MATLAB in order to determine the theoretical optical efficiency and the optical flux distribution at the photovoltaic cell of a 3-D Crossed Compound Parabolic Concentrator (CCPC) for different incidence angles of light rays.
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Performance analysis of a dielectric based 3D building integrated concentrating photovoltaic system
TL;DR: In this article, the energy transformations and the expected energy output of a low concentrating photovoltaic system designed to have a geometric concentration of 3.6× was addressed. But the authors did not consider the effects of non-uniformity caused by the use of the concentrator.
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Facile Surfactant-Free Synthesis of p-Type SnSe Nanoplates with Exceptional Thermoelectric Power Factors
Guang Han,S. R. Popuri,Heather F. Greer,Jan-Willem G. Bos,Wuzong Zhou,Andrew Ramsay Knox,Andrea Montecucco,Jonathan Siviter,Elena A. Man,Martin W. S. Macauley,Douglas J. Paul,Wenguang Li,Manosh C. Paul,Min Gao,Tracy K. N. Sweet,Robert Freer,Feridoon Azough,Hasan Baig,Nazmi Sellami,Tapas K. Mallick,Duncan H. Gregory +20 more
TL;DR: The surfactant‐free solution methodology, simply using water as a solvent, has been developed for the straightforward synthesis of single‐phase orthorhombic SnSe nanoplates in gram quantities, and offers an energy‐efficient, rapid route to p‐type Sn Se nanostructures.
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Optical characterisation of 3-D static solar concentrator
TL;DR: In this article, the Square Elliptical Hyperboloid (SEH) was designed and coined the square elliptical hyperboloid to be integrated in glazing windows or facades for photovoltaic application.
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Modelling photovoltaic soiling losses through optical characterization
Greg P. Smestad,Thomas A. Germer,Hameed Alrashidi,Eduardo F. Fernández,Sumon Dey,Honey Brahma,Nabin Sarmah,Aritra Ghosh,Nazmi Sellami,Nazmi Sellami,Ibrahim A. I. Hassan,Ibrahim A. I. Hassan,Mai Desouky,Amal Kasry,Bala Pesala,Senthilarasu Sundaram,Florencia Almonacid,K.S. Reddy,Tapas K. Mallick,Leonardo Micheli,Leonardo Micheli +20 more
TL;DR: It was found that natural soiling disproportionately impacts the blue and ultraviolet portions of the spectrum compared to the visible and infrared (IR) spectrum.