Manufacturing of a parabolic trough concentrating collector test rig and a “LASER-Screen” technique for measuring actual focal length and light interceptance of the collector

Author:

Islam Majedul,Sadi Mohiuddin,Limon Amir Hamza,Faruque Md. Omar,Yarlagadda Prasad K.D.V.

Publisher

Elsevier BV

Subject

Artificial Intelligence,Industrial and Manufacturing Engineering

Reference29 articles.

1. Burgess, G.; Scott, P.; Pye, J. spherical and asymmetric mirror panels for paraboloidal concentrators. Presented at the 3rd International Solar Energy Society Conference—Asia Pacific Region (ISES-AP-08), Sydney, Australia, 4–6 March 2008.

2. Kalogirou, S.A. Solar Energy Engineering: Processes and Systems. In Solar Energy Engineering; Kalogirou, S.A., Ed.; Academic Press: Boston, MA, USA, 2009; pp. 1–48.

3. Optimization of an integral flat plate collector-storage system for domestic solar water heating in Adana;Yılmaz;Anadolu Univ. J. Sci. Technol. A Appl. Sci. Eng.,2018

4. Islam, M.; Karim, A.; Saha, S.C.; Miller, S.; Yarlagadda, P.K. Three dimensional simulation of a parabolic trough concentrator thermal collector. In the Proceedings of the 50th Annual Conference, Australian Solar Energy Society (AuSES), Swinburne University of Technology, Melbourne, Australia, 6–7 December 2012.

5. Islam, M.; Saha, S.C.; Karim, M.A.; Yarlagadda, P.K.D.V. A Method of Three-Dimensional Thermo-Fluid Simulation of the Receiver of a Standard Parabolic Trough Collector. In Application of Thermo-Fluid Processes in Energy Systems: Key Issues and Recent Developments for a Sustainable Future; Khan, M.M.K., Chowdhury, A.A., Hassan, N.M.S., Eds.; Springer Singapore: Singapore, 2018; pp. 203–230.

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