Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 13
Page No. 4887 - 4891

Thermal Performance Characteristics of Three Sides 60° Inclined Wire Roughened Solar Air Heater

Authors : Ravi Kumar, L. Prasad and B.N. Prasad

References

ASHARE Standards, 1977. Methods of testing to determine the thermal performance of solar collectors. ASHARE Standards, Atlanta, Georgia.

Adeyemo, S.B. and O.F. Adeoye, 2008. Comparative performance of two discrete solar collectors. J. Eng. Appl. Sci., 3: 228-232.

Behura, A.K., B.N. Prasad and L. Prasad, 2016. Heat transfer, friction factor and thermal performance of three sides artificially roughened solar air heaters. Sol. Energy, 130: 46-59.
CrossRef  |  Direct Link  |  

Bernier, M.A. and E.G. Plett, 1988. Thermal performance representation and testing of air solar collectors. J. Sol. Energy Eng., 110: 74-81.
CrossRef  |  Direct Link  |  

Bhushan, B. and R. Singh, 2011. Nusselt number and friction factor correlations for solar air heater duct having artificially roughened absorber plate. Sol. Energy, 85: 1109-1118.
CrossRef  |  Direct Link  |  

Biondi, P., L. Cicala and G. Farina, 1988. Performance analysis of solar air heaters of conventional design. Sol. Energy, 41: 101-107.
CrossRef  |  Direct Link  |  

Chabane, F., N. Moummi and S. Benramache, 2014. Experimental study of heat transfer and thermal performance with longitudinal fins of solar air heater. J. Adv. Res., 5: 183-192.
CrossRef  |  PubMed  |  Direct Link  |  

Chamoli, S., N.S. Thakur and J.S. Saini, 2012. A review of turbulence promoters used in solar thermal systems. Renewable Sustainable Energy Rev., 16: 3154-3175.
CrossRef  |  Direct Link  |  

Chamoli, S., R. Chauhan, N.S. Thakur and J.S. Saini, 2012. A review of the performance of double pass solar air heater. Renewable Sustainable Energy Rev., 16: 481-492.
CrossRef  |  Direct Link  |  

Gawande, V.B., A.S. Dhoble and D.B. Zodpe, 2014. Effect of roughness geometries on heat transfer enhancement in solar thermal systems: A review. Renewable Sustainable Energy Rev., 32: 347-378.
CrossRef  |  Direct Link  |  

Gupta, C.L. and H.P. Garg, 1967. Performance studies on solar air heaters. Sol. Energy, 11: 25-31.
CrossRef  |  Direct Link  |  

Gupta, D., S.C. Solanki and J.S. Saini, 1993. Heat and fluid flow in rectangular solar air heater ducts having transverse rib roughness on absorber plates. Sol. Energy, 51: 31-37.
CrossRef  |  Direct Link  |  

Gupta, D., S.C. Solanki and J.S. Saini, 1997. Thermohydraulic performance of solar air heaters with roughened absorber plates. Sol. Energy, 61: 33-42.
Direct Link  |  

Jaurker, A.R., J.S. Saini and B.K. Gandhi, 2006. Heat transfer and friction characteristics of rectangular solar air heater duct using rib-grooved artificial roughness. Sol. Energy, 80: 895-907.
Direct Link  |  

Karmare, S.V. and A.N. Tikekar, 2007. Heat transfer and friction factor correlation for artificially roughened duct with metal grit ribs. Intl. J. Heat Mass Transfer, 50: 4342-4351.
Direct Link  |  

Lanjewar, A., J.L. Bhagoria and R.M. Sarviya, 2011. Heat transfer and friction in solar air heater duct with W-shaped rib roughness on absorber plate. Energy, 36: 4531-4541.
CrossRef  |  Direct Link  |  

Ozgen, F., M. Esen and H. Esen, 2009. Experimental investigation of thermal performance of a double-flow solar air heater having Aluminium cans. Renewable Energy, 34: 2391-2398.
CrossRef  |  Direct Link  |  

Patil, A.K., J.S. Saini and K. Kumar, 2012. A comprehensive review on roughness geometries and investigation techniques used in artificially roughened solar air heaters. Intl. J. Renewable Energy Res., 2: 1-15.
Direct Link  |  

Prasad, B.N. and J.S. Saini, 1991. Optimal thermohydraulic performance of artificially roughened solar air heaters. Sol. Energy, 47: 91-96.
CrossRef  |  Direct Link  |  

Prasad, B.N., A. Kumar and K.D.P. Singh, 2015. Optimization of thermo hydraulic performance in three sides artificially roughened solar air heaters. Sol. Energy, 111: 313-319.
Direct Link  |  

Prasad, B.N., A.K. Behura and L. Prasad, 2014. Fluid flow and heat transfer analysis for heat transfer enhancement in three sided artificially roughened solar air heater. Sol. Energy, 105: 27-35.
CrossRef  |  Direct Link  |  

Prasad, B.N.and J.S. Saini, 1988. Effect of artificial roughness on heat transfer and friction factor in a solar air heater. Sol. Energy, 41: 555-560.
CrossRef  |  Direct Link  |  

Reddy, T.A. and C.L. Gupta, 1980. Generating application design data for solar air heating systems. Sol. Energy, 25: 527-530.
Direct Link  |  

Saini, R.P. and J.S. Saini, 1997. Heat transfer and friction factor correlations for artificially roughened ducts with expanded metal mesh as roughness element. Intl. J. Heat Mass Transfer, 40: 973-986.
Direct Link  |  

Saini, R.P. and S.K. Singal, 2007. A review on roughness geometry used in solar air heaters. Sol. Energy, 81: 1340-1350.
CrossRef  |  Direct Link  |  

Saurav, S. and V.N. Bartaria, 2013. Heat transfer and thermal efficiency of solar air heater having artificial roughness: A review. Intl. J. Renewable Energy Res., 3: 498-508.
CrossRef  |  Direct Link  |  

Shakya, U., R.P. Saini and M.K. Singhal, 2013. A review on artificial roughness geometry for enhancement of heat transfer and friction characteristic on roughened duct of solar air heater. Intl. J. Emerg. Technol. Adv. Eng., 3: 279-287.
Direct Link  |  

Singh, S., S. Chander and J.S. Saini, 2011. Heat transfer and friction factor correlations of solar air heater ducts artificially roughened with discrete V-down ribs. Energy, 36: 5053-5064.
CrossRef  |  Direct Link  |  

Yadav, A.S. and J.L. Bhagoria, 2013. A CFD (Computational Fluid Dynamics) based heat transfer and fluid flow analysis of a solar air heater provided with circular transverse wire rib roughness on the absorber plate. Energy, 55: 1127-1142.
CrossRef  |  Direct Link  |  

Yadav, A.S. and J.L. Bhagoria, 2014. A CFD based thermo-hydraulic performance analysis of an artificially roughened solar air heater having equilateral triangular sectioned rib roughness on the absorber plate. Intl. J. Heat Mass Transfer, 70: 1016-1039.
CrossRef  |  Direct Link  |  

Yadav, A.S. and J.L. Bhagoria, 2014. A numerical investigation of square sectioned transverse rib roughened solar air heater. Intl. J. Thermal Sci., 79: 111-131.
CrossRef  |  Direct Link  |  

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