References
- Amanuel Weldu, Li Zhao, Shuai Deng, Nigussie Mulugeta, Ying Zhang, Xianhua Nie, Weicong Xu, Performance evaluation on solar box cooker with reflector tracking at optimal angle under Bahir Dar climate, Solar Energy 180 (2019) 664–677.
- Abhishek Saxena, Nitin Agarwal, Performance characteristics of a new hybrid solar cooker with air duct, Solar Energy 159 (2018) 628–637
- Pinar Mert Cuce, Box type solar cookers with sensible thermal energy storage medium: A comparative experimental investigation and thermodynamic analysis, Solar Energy 166 (2018) 432–440.
- Zeleke Ademe, Sameer Hameer, Design, construction and performance evaluation of a Box type solar cooker with a glazing wiper mechanism, AIMS Energy, 6(1): 146–169.
- Hafiz Abdullah Zafar, Muhammad Yasin Khan, Abdul Waheed Badar, Rasikh Tariq, and Fahad Sarfraz Butt, Introducing a novel design in the realm of box type solar cookers: An experimental study, Journal of Renewable and Sustainable Energy 10, 043707 (2018)
- Avnish Kumar, Abhishek Saxena, S.D. Pandey, S.K. Joshi, Design and performance characteristics of a solar box cooker with phase change material: A feasibility study for Uttarakhand region, India, Applied Thermal Engineering 208 (2022) 118196
- Ravi Kumar Goyal, M. Eswaramoorthy, Modeling and analysis of compound parabolic concentrator integrated box type solar cooker, Materials Today: Proceedings 72 (2023) 1047-1055.
- A. Harmim, M. Belhamel, M. Boukar, M. Amar, Experimental investigation of a box-type solar cooker with a finned absorber plate, Energy 35 (2010) 3799-3802
- Rohit Misra, Tarun Kumar Aseri, Thermal performance enhancement of box-type solar cooker: a new approach, International Journal of Sustainable Energy, 31(2), (2012)107-118
- B.S. Negi, I. Purohit, Experimental investigation of a box type solar cooker employing a non-tracking concentrator, Energy Conversion and Management 46 (2005) 577–604
- Emad H. Amer, Theoretical and experimental assessment of a double exposure solar cooker, Energy Conversion and Management 44 (2003) 2651–2663
- A. Harmim, M. Merzouk, M. Boukar, M. Amar, Design and experimental testing of an innovative building-integrated box type solar cooker (Algeria), Solar Energy 98 (2013) 422–433.
- M.A. Tawfik, Atul A. Sagade, Rodrigo Palma-Behnke, Hanan M. El-Shal, W. E. Abd Allah, Solar cooker with tracking-type bottom reflector: An experimental thermal performance evaluation of a new design, Solar Energy 220 (2021) 295–315
- Erdem Cuce, Pinar Mert Cuce, Theoretical investigation of hot box solar cookers having conventional and finned absorber plates, International Journal of Low-Carbon Technologies 10 (2015) 238 – 245
- S. Mahavar, M. Verma, P. Rajawat, N. Sengar, P. Dashora. Novel solar cookers: suitable for small families, International Journal of Sustainable Energy 32 (6), (2013) 574-586, DOI:10.1080/14786451.2012.734824
- N.M. Nahar, Design, development and testing of a double reflector hot box solar cooker with a transparent insulation material, Renewable Energy 23 (2001) 167–179
- Arezki Harmim, Mebarek Boukar, M’hamed Amar. Experimental study of a double exposure solar cooker with finned cooking vessel. Solar Energy 82 (2008) 287–289
- Gulsavin Guruprasad Engoor, S. Shanmugam, and AR. Veerappan. Experimental investigation of a box-type solar cooker incorporated with Fresnel lens magnifier, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, (2020) 1-16, DOI: 10.1080/15567036.2020.1826009
- M. Özkaymak, Theoretical and experimental investigation of a hot box-type solar cooker performance, Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 221(1) (2007) 91-97, DOI: 10.1243/09576509JPE326
- Gianluca Coccia, Giovanni Di Nicola, Mariano Pierantozzi, Sebastiano Tomassetti, Alessia Aquilanti, Design, manufacturing, and test of a high concentration ratio solar box cooker with multiple reflectors, Solar Energy 155 (2017) 781–792
- Gianluca Coccia, Alessia Aquilanti, Sebastiano Tomassetti, Gabriele Comodi, Giovanni Di Nicola, Design, realization, and tests of a portable solar box cooker coupled with an erythritol-based PCM thermal energy storage, Solar Energy 201 (2020) 530–540
- Atul A. Sagade, S.K. Samdarshi, P.J. Lahkar, Narayani A. Sagade, Experimental determination of the thermal performance of a solar box cooker with a modified cooking pot, Renewable Energy 150 (2020) 1001–1009
- Elumalai Vengadesan, Ramalingam Senthil, Experimental investigation of the thermal performance of a box type solar cooker using a finned cooking vessel, Renewable Energy 171 (2021) 431–446
- V.P. Sethi, D.S. Pal, K. Sumathy, Performance evaluation and solar radiation capture of optimally inclined box type solar cooker with parallelepiped cooking vessel design, Energy Conversion and Management 81 (2014) 231–241
- Mullick SC, Khandpal TC, Saxena AK, Thermal test procedures for box type solar cooker, Solar Energy 1987;39:353–60.
- Mullick, S.C., Kandpal, T.C., Kumar, S., Testing of box-type solar cooker: second figure of merit F2 and its variation with load and number of pots, Sol. Energy 57 (5) (1996), 409–413
- BIS–Bureau of Indian Standards- Second Revision of IS, 13429 (part 1)–Solar Cooker-Box Type- Specification, Part 1-Requirements
- ASABE, 2013. ASAE S580.1 NOV2013, Testing and Reporting Solar Cooker Performance. American Society of Agricultural and Biological Engineers, St. Joseph, Michigan, USA.
- Manuel Collares-Pereira, Afonso Cavaco, Ailton Tavares, Design, manufacture and test of a low-cost solar cooker with high-performance light-concentrating lens, Solar Energy 166 (2018) 21–27
- Atul A. Sagade, S.K. Samdarshi, P.J. Lahkar, Narayani A. Sagade. Experimental determination of the thermal performance of a solar box cooker with a modified cooking pot, Renewable Energy 150 (2020) 1001-1009
- Funk, P.A, Evaluating the international standard procedure for testing solar cookers and reporting performance, Sol. Energy 68 (1) (2000), 1–7
