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Recovery, Utilization, and Environmental Effects: 34: 1731-1736. 7. Fareed, M. M., Auatf. S., Yaseen H., Mahmood., Mohamad A. K. Ahmed. (2012). Design and Study of Portable Solar Dish Concentrator, International Journal of Recent Research and Review, III, ISSN 2277 – 8322. 8. Garba,B., Atiku, A. T., And Maduekwe. (1996). Mathematical Modeling of Some Renewable Energy System: A Case Study of Solar Cooker, Solar Still, Solar Water Heater, Saw Dust and Improve Wood- Burning Stove. Nigerian Journal of Renewable Energy, 4,(2); 1-11, 9. Garg, H.P., and Prakash, J. (2000). Solar Energy: Fundamentals and Generation: A Thesis Submitted to the Department of Mechanical Engineering in Partial Fulfillment of the Requirements for the Degree of (Mechanical Engineering) at Babaria Institute of Technology, Vadodara (Affliated to Gujarat Technological University, Gandhinagar). 10. Gorjan, S., Tavakkoli Hashjin, T., Ghobadian, B., and Banakar, A. (2013): Thermal Performance of a Point-focus Solar Steam Generating System, 21st Annual International Conference on Mechanical Engineering, ISME 2013, 7–9 May 2013, School of Mechanical Eng., K. N. Toosi University, Tehran, Iran, 2013. 11. Huseyin, O.H. (2004). Energy and Energy Efficiencies of Solar Box Cooker, International Journal of Energy, Vol.1(2) pp202-214. 12. Ibrahim, L. M. (2012). Design and Development of a Parabolic Dish Solar Water Heater, Mechanical Engineering Department, College of Engineering, Kaduna Polytechnic, Kaduna, Nigera. International Journal of Engineering Research and Applications (Ijera): 2248-9622 www.ijera.com 2(1); pp. 822-830. 13. Jones, P.D. and Wang, L. (1995).Concentration Distributions in Cylindrical Receiver/Paraboloidal Dish Concentrator Systems, Solar Energy, 2: 115- 123 14. Li, X., Zhifeng, W., Xin, L., Guofeng, Y., Felhu, S. and Dongqiang, L. (2013). Dynamic test model for the transient thermal performance of parabolic trough solar collectors. Solar Energy 95: 65-78 15. Lovegrove, K. Burgess G. and Pye, J.(2011). A new 500 m² paraboloidal dish solar concentrator', Solar Energy 85: 620-626. 16. NOVA-(2007). Finding the Focal point, Saved by the Sun//Student handout, WGBH, Educational Foundation. 17. Pavlovic, S.R., Evangelos, A.B., Velimir, P.S., Christos, T. and Zoran, M.S. (2016). Design, simulation and optimaztion of a solar dish collector with spiral coil thermal absorber. Thermal science. 4: 1387-1393 18. Qianjun, M., Ming, X., Yong, S. and Yuan, Y.,(2013). Study on Solar Photo Thermal Conversion Efficiency of a Solar Parabolic Dish System. Environmental progress & Sustainable energy .33: 1438-1444. 19. Reddy, S. V., Kaushik, S.C., Ranjan, K.R. and Tyagi, S.K. (2013). State-of-the-art of solar thermal power plants—A review. Renewable Sustainable Energy Rev 27: 258–273 . 20. Sadik, U., Mohammed, U.K., Garba, M.M., Yahaya, H.N., and Ali, A.U. (2013) Experimental performance evaluation of parabolic trough concentration. International Journal of Environmental and Bioenergy8(2):86-93. 21. Takkar, V., Doshi, A. and Rana, A. (2015). Performance Analysis Methodology for Parabolic Dish Solar Concentrators for Process Heating Using Thermic Fluid. Journal of Mechanical and Civil Engineering. 12:101-114. 22. Thomas,A. (1992). Energy Conversion Management 33,191, Nigerian Journal of Renewable Energy, 11(1) and (2) pp136-144, Published By Sokoto Energy Research Centre (SERC) Usmanu Danfodiyo University, Sokoto. 23. Vanita T. (2013). Status of Parabolic Dish Solar Concentrators , International Journal of Enhanced Research in Science Technology & Engineering Vol. 2: 42 -50, Analysis of Thermal and Optical Efficiency of Parabolic Concentrating System for Thermal Application lobal Journal of Researches in Engineering ( ) Volume XxXII Issue I Version I J G 57 Year 2022

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