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Articles

Energetic and exergetic performance assessment of solar cookers with different geometrical designs

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Pages 62-69 | Received 24 May 2013, Accepted 04 Jul 2013, Published online: 02 Sep 2013

References

  • Ashok, K. 1998. A Review of Solar Cooker Designs. TIDE 8 (1): 1–37.
  • Cuce, E., and T. Bali. 2009. “Variation of Cell Parameters of a p-Si PV Cell with Different Solar Irradiances and Cell Temperatures in Humid Climates.” Fourth International Exergy, Energy and Environment Symposium, Sharjah, United Arab Emirates, April 19–23.
  • Cuce, E., T. Bali, and S. A. Sekucoglu. 2011. “Effects of Passive Cooling on Performance of Silicon Photovoltaic Cells.” International Journal of Low-Carbon Technologies 6 (4): 299–308. doi: 10.1093/ijlct/ctr018
  • Cuce, P. M., and E. Cuce. 2012a. “A Novel Model of Photovoltaic Modules for Parameter Estimation and Thermodynamic Assessment.” International Journal of Low-Carbon Technologies 7 (2): 159–165. doi: 10.1093/ijlct/ctr034
  • Cuce, P. M., and E. Cuce. 2012b. “Homotopy Perturbation Method for Temperature Distribution, Fin Efficiency and Fin Effectiveness of Convective Straight Fins.” International Journal of Low-Carbon Technologies. doi: 10.1093/ijlct/cts062.
  • Cuce, E., and P. M. Cuce. 2012c. “Homotopy Perturbation Method for Temperature Distribution, Fin Efficiency and Fin Effectiveness of Convective Straight Fins with Temperature-Dependent Thermal Conductivity.” Proceedings of the Institution of Mechanical Engineers, Part C, Journal of Mechanical Engineering Science. doi: 10.1177/0954406212469579.
  • Cuce, E., and P. M. Cuce. 2013a. “A Comprehensive Review on Solar Cookers.” Applied Energy 102: 1399–1421. doi: 10.1016/j.apenergy.2012.09.002
  • Cuce, P. M., and E. Cuce. 2013b. “Optimization of Configurations to Enhance Heat Transfer from a Longitudinal Fin Exposed to Natural Convection and Radiation.” International Journal of Low-Carbon Technologies. doi:10.1093/ijlct/ctt005.
  • Cuce, E., and P. M. Cuce. 2013c. “He's Homotopy Perturbation Method for Prey and Predator Problem Considering Real Life Situations.” Far East Journal of Applied Mathematics 76 (1): 13–24.
  • Cuce, E., and P. M. Cuce. 2013d. “Theoretical Investigation of Hot Box Solar Cookers Having Conventional and Finned Absorber Plates.” International Journal of Low-Carbon Technologies. doi:10.1093/ijlct/ctt052.
  • Cuce, E., and P. M. Cuce. 2013e. “Improving Thermodynamic Performance Parameters of Silicon Photovoltaic Cells Via Air Cooling.” International Journal of Ambient Energy. doi: 10.1080/01430750.2013.793481.
  • Cuce, E., P. M. Cuce, and T. Bali. 2013. “An Experimental Analysis of Illumination Intensity and Temperature Dependency of Photovoltaic Cell Parameters.” Applied Energy 111: 374–382. doi: 10.1016/j.apenergy.2013.05.025
  • Gayapershad, R., S. T. Dladla, and M. J. Brooks. 2011. “Preliminary Results From a Performance Evaluation Study of Commercial Solar Cookers.” Accessed November 8, 2012. http://www.wcpsd.org/posters/environment/Gayapershad.pdf
  • Harmim, A., M. Belhamel, M. Boukar, and M. Amar. 2010. “Experimental Investigation of a Box-Type Solar Cooker with a Finned Absorber Plate.” Energy 35: 3799–3802. doi: 10.1016/j.energy.2010.05.032
  • International Energy Agency. 2011. Solar Energy Perspectives: Executive Summary. International Energy Agency.
  • Kaushik, S. C., and M. K. Gupta. 2008. “Energy and Exergy Efficiency Comparison of Community Size and Domestic-Size Paraboloidal Solar Cooker Performance.” Energy for Sustainable Development 9 (3): 60–64. doi: 10.1016/S0973-0826(08)60440-8
  • Kaushik, S. C., R. D. Mishra, and N. Singh. 2000. “Second Law Analysis of a Solar Thermal Power System.” International Journal of Solar Energy 20 (4): 239–253. doi: 10.1080/01425910008914358
  • Kaushik, S. C., V. S. Reddy, and S. K. Tyagi. 2011. “Energy and Exergy Analyses of Thermal Power Plants: A Review.” Renewable and Sustainable Energy Reviews 15: 1857–1872. doi: 10.1016/j.rser.2010.12.007
  • Kumar, N., G. Vishwanath, and A. Gupta. 2012. “An Exergy Based Unified Test Protocol for Solar Cookers of Different Geometries.” Renewable Energy 44: 457–462. doi: 10.1016/j.renene.2012.01.085
  • Larson, D. L., and L. A. B. Cortez. 1995. “Exergy Analysis: Essentials to Effective Energy Management.” Transactions of the ASAE 38 (4): 1173–1178.
  • Li Yang Shanying, H. U., C. Dingjiang, and Z. Dawei. 2006. “Exergy Analysis on Eco-Industrial System.” Science in China Series B – Chemistry 49 (3): 281–288. doi: 10.1007/s11426-006-0281-0
  • Muthusivagami, R. M., R. Velraj, and R. Sethumadhavan. 2010. “Solar Cookers With and Without Thermal Storage: A Review.” Renewable and Sustainable Energy Reviews 14: 691–701. doi: 10.1016/j.rser.2008.08.018
  • Nahar, N. M. 2003. “Performance and Testing of a Hot Box Storage Solar Cooker.” Energy Conversion and Management 44: 1323–1331. doi: 10.1016/S0196-8904(02)00113-9
  • Ozturk, H. H. 2004. “Experimental Determination of Energy and Exergy Efficiency of the Solar Parabolic-Cooker.” Solar Energy 77: 67–71. doi: 10.1016/j.solener.2004.03.006
  • Pandey, A. K., V. V. Tyagi, S. R. Park, and S. K. Tyagi. 2012. “Comparative Experimental Study of Solar Cookers Using Exergy Analysis.” Journal of Thermal Analysis and Calorimetry 109: 425–431. doi: 10.1007/s10973-011-1501-1
  • Panwar, N. L., S. C. Kaushik, and S. Kothari. 2012a. “State of the Art of Solar Cooking: An Overview.” Renewable and Sustainable Energy Reviews 16: 3776–3785. doi: 10.1016/j.rser.2012.03.026
  • Panwar, N. L., S. C. Kaushik, and S. Kothari. 2012b. “Experimental Investigation of Energy and Exergy Efficiencies of Domestic Size Parabolic Dish Solar Cooker.” Journal of Renewable and Sustainable Energy 4: 023111. doi: 10.1063/1.3699615
  • Panwar, N. L., S. Kothari, and S. C. Kaushik. 2010. “Experimental Investigation of Energy and Exergy Efficiency of Masonry-Type Solar Cooker for Animal Feed.” International Journal of Sustainable Energy 29 (3): 178–184. doi: 10.1080/14786461003628679
  • Petela, R. 2003. “Exergy of Undiluted Thermal Radiation.” Solar Energy 74: 469–488. doi: 10.1016/S0038-092X(03)00226-3
  • Petela, R. 2010. Engineering Thermodynamics of Thermal Radiation for Solar Power Utilization. New York: McGraw-Hill.
  • Pohekar, S. D., D. Kumar, and M. Ramachandran. 2005. “Dissemination of Cooking Energy Alternatives in India: A Review.” Renewable and Sustainable Energy Reviews 9: 379–393. doi: 10.1016/j.rser.2004.05.001
  • Riffat, S. B., and E. Cuce. 2011a. “A Review on Hybrid Photovoltaic/Thermal Collectors and Systems.” International Journal of Low-Carbon Technologies 6 (3): 212–241. doi: 10.1093/ijlct/ctr016
  • Riffat, S. B., and E. Cuce. 2011b. “A Review on Performance Analysis of Photovoltaic/Thermal Collectors.” Tenth International Conference on Sustainable Energy Technologies, Istanbul, Turkey, September 4–7.
  • Riffat, S. B., and E. Cuce. 2012. “Aerogel with Its Outstanding Features and Building Applications.” Eleventh International Conference on Sustainable Energy Technologies, Vancouver, Canada, September 2–5.
  • Rosen, M. A., F. C. Hooper, and L. N. Barbaris. 1998. “Exergy Analysis for the Evaluation of the Performance of Closed Thermal Energy Storage Systems.” Transactions of the ASME, Journal of Solar Energy Engineering 110: 255–261. doi: 10.1115/1.3268265
  • Saxena, A., V. Goel, and A. Patnaik. 2012. “Performance Estimation of a Solar Box Cooker by Approaching Taguchi Technique.” Asian Journal of Engineering and Applied Technology 1 (1): 53–62.
  • Saxena, A., Varun, S. P. Pandey, and G. Srivastav. 2011. “A Thermodynamic Review on Solar Box Type Cookers.” Renewable and Sustainable Energy Reviews 15: 3301–3318. doi: 10.1016/j.rser.2011.04.017
  • Srivastava, T., and K. Sudhakar. 2013. “Energy and Exergy Analysis of 36 W Solar Photovoltaic Module.” International Journal of Ambient Energy. doi: 10.1080/01430750.2013.770799.
  • Toonen, H. M. 2009. “Adapting to An Innovation: Solar Cooking in the Urban Households of Ouagadougou (Burkina Faso).” Physics and Chemistry of the Earth 34: 65–71. doi: 10.1016/j.pce.2008.03.006
  • Wentzel, M., and A. Pouris. 2007. “The Development Impact of Solar Cookers: A Review of Solar Cooking Impact Research in South Africa.” Energy Policy 35: 1909–1919. doi: 10.1016/j.enpol.2006.06.002
  • WHO (World Health Organization). 2006. Fuel for Life. Geneva: WHO.

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