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Research Article

Hybrid PVT Active Two Compartment Solar Still for improving performance of Solar PV and Enhance the productivity of Solar still

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Pages 5885-5904 | Received 19 Jan 2023, Accepted 09 Mar 2023, Published online: 15 May 2023

References

  • Abdelaziz, G. B., A. M. Algazzar, E. M. S. El-Said, A. Mimi Elsaid, S. W. Sharshir, A. E. Kabeel, and S. M. El-Behery. 2021. Performance enhancement of tubular solar still using nano-enhanced energy storage material integrated with v-corrugated aluminium basin, wick, and nanofluid. Journal of Energy Storage. 41: 102933. ISSN 2352-152X. doi:10.1016/j.est.2021.102933.
  • Abed, A. H., H. Assi Hoshi, M. Hassan, and Jabal. 2021. Experimental investigation of modified solar still coupled with high-frequency ultrasonic vaporizer and phase change material capsules. Case Studies in Thermal Engineering. 28 (101531):101531. ISSN 2214-157X. doi:10.1016/j.csite.2021.101531.
  • Akrout, H., and B. KhaoulaHidouri. 2022. The effect of water droplets geometry on the performance of solar still. International Journal of Ambient Energy 43 (1):7161–72. doi:10.1080/01430750.2022.2063385.
  • Asbik, M., H. H. HassaneBoushaba, A. Koukouch, A. M. M. Abderraouf Sabri, A. Sabri, and A. Muthu Manokar. 2021. Investigating the effect of sensible and latent heat storage materials on the performance of a single basin solar still during winter days. Journal of Energy Storage. 44 (Part B):103480. ISSN 2352-152X. doi:10.1016/j.est.2021.103480.
  • Attia, M. E. H., A. Karthick, A. M. Manokar, Z. Driss, A. E. Kabeel, R. Sathyamurthy, and M. Sharifpur. 2020. Sustainable potable water production from conventional solar still during the winter season at Algerian dry areas: Energy and exergy analysis. Journal of Thermal Analysis and Calorimetry 145. doi:10.1007/s10973-020-10277-x.
  • Benoudina, B., M. E. H. Attia, Z. Driss, A. Afzal, A. M. Manokar, and R. Sathyamurthy. 2021. Enhancing the solar still output using micro/nanoparticles of aluminium oxide at different concentrations: An experimental study, energy, exergy and economic analysis. Sustainable Materials and Technologies 29:e00291. doi:10.1016/j.susmat.2021.e00291.
  • Darbari, B., and S. Rashidi. 2021. Performance analysis for single slope solar still enhanced with multi-shaped floating porous absorber. Sustainable Energy Technologies and Assessments. 50 (2022101854):101854. ISSN 2213-1388. doi:10.1016/j.seta.2021.101854.
  • David, P. W., K. Ganesan, P. Murugesan, P. Murugesan, G. Jeyakodi, P. Kumar Balachandran, S. Kumar Cherukuri, T. Sudhakar Babu, and H. Haes Alhelou. 2021. A New Alternate Method to Reuse Rehashed Edible Oil for the Betterment of Society - Dual Benefit Approach in Photovoltaic Modules. IEEE Access 9:128434–41. doi:10.1109/ACCESS.2021.3112582.
  • Diniz, F. L. J., C. V. P. Vital, and L. A. Gómez-Malagón. 2022. Parametric analysis of energy and exergy efficiencies of a hybrid PV/T system containing metallic nanofluids. Renewable Energy 186:51–65. ISSN 0960-1481. doi:10.1016/j.renene.2021.12.151.
  • El-Agouz, S. A., Y. A. F. El-Samadony, and A. E. Kabeel. 2015. Performance evaluation of a continuous flow inclined solar still desalination system. Energy Conversion and Management 101:606–15.
  • Elbar, A. R. A., and H. Hassan. 2019. Experimental investigation on the impact of thermal energy storage on the solar still performance coupled with PV module via new integration. Solar Energy 184:584–93. doi:10.1016/j.solener.2019.04.042.
  • Elbar, A. R. A., and H. H. Hassan. 2019. An experimental work on the performance of solar still incorporating with wind turbine and thermal energy storage unit. Desalination and Water Treatment. 165 (2019):24–34. n. pag. doi:10.5004/dwt.2019.24492.
  • Elgendi, M., M. Al Dhaheri, A. Al Baeek, and H. A. S. SultanSaad. 2021. Nanotechnology in solar still: Conceptual design. 6th International Conference on Renewable Energy: Generation and Applications (ICREGA), doi:10.1109/icrega50506.2021.9388271.
  • El HadiAttia, M., A. AbdElnabykabeel, A. Muthu Manokar, Z. RavishankarSathyamurthy, and S. Muthusamy. 2021. A comparative energy and exergy efficiency study of hemispherical and single-slope solar stills. Environmental Science and Pollution Research. doi:10.1007/s11356-021-13161-9.
  • Ganesan, K., D. Prince Winston, S. Ravishankar, and S. Muthusamy. 2022. Investigational study on improving the yield from hybrid PV/T modified conventional solar still with enhanced evaporation and condensation technique - an experimental approach. Energy Sources, Part A: Utilization, and Environmental Effects- Taylor & Francis 44 (2):5267–86. doi:10.1080/15567036.2022.2083273.
  • Gao, W., L. Shen, S. Sun, G. Peng, Z. Shen, Y. Wang, A. Kandeal, Z. Luo, A. E. Kabeel, J. Zhang, et al., 2022. Forecasting solar still performance from conventional weather data variation by machine learning method. Chinese Physics B 1056–674. http://iopscience.iop.org/article/10.1088/1674-1056/ac989f.
  • Gaur, M. K., and G. N. Tiwari. 2010. Optimization of number of collectors for integrated PV/T hybrid active solar still. Appl Energy 87 (5):1763–72.
  • Ismail, B. I. 2009. Design and performance of a transportable hemispherical solar still. Renewable Energy 34 (1):145–50.
  • Kabeel Mohamed, A. E., R. Diab, M. A. Elazab, and E. M. S. El-Said. 2022. Hybrid solar-powered desalination system based on air humidification dehumidification integrated with novel distiller: Exergy economic analysis. Journal of Cleaner Production 379 (Part 1):134690. ISSN 0959-6526. doi:10.1016/j.jclepro.2022.134690.
  • Kumar, S. A., P. S. M. Kumar, R. Sathyamurthy, and A. M. Manokar. 2022. A comparative analysis of the role of carbon dioxide in multi-slope solar stills. International Journal of Ambient Energy 43 (1):5595–604. doi:10.1080/01430750.2021.1969686.
  • Kumar Ramalingam, V., M. P. V. J. AlagarKarthick, A. Marcel Moshi Antony Joseph Decruz, A. Muthu Manokar, R. Sathyamurthy, and R. Sathyamurthy. 2021. Enhancing the fresh water from inclined cover stepped absorber solar still uses wick and energy storage materials. Environmental Science and Pollution Research 28:18146–62. doi:10.1007/s11356-020-12030-1.
  • Kumar Singh, S., M. Kumar Mittal, and D. Sharma. 2022. Thermal performance enhancement of basin-type solar still coupled with mini solar pond and shallow solar pond in a closed-cycle mode. Energy Sources, Part A: Utilization, and Environmental Effects 44 (3):7237–51. Taylor& Francis. doi:10.1080/15567036.2022.2108169.
  • Madhu, B., E. Balasubramanian, A. Elnaby Kabeel, R. Sathyamurthy, E.S. El-Agouz, and A. Muthu Manokar. Athikesavan Muthu Manokar, 2019. Experimental investigation on the effect of photovoltaic panel partially and fully submerged in water. Wiley- Heat Transfer 48 5: July 1709–21. 10.1002/htj.21453.
  • Mahmoud, E., A. E. Kabeel, and F. A. Essa. 2022. Improving the solar still productivity using thermoelectric materials: A review. Alexandria Engineering Journal 65:963–82. ISSN 1110-0168. doi:10.1016/j.aej.2022.10.011.
  • Mandi, B., Y. Menni, R. Maouedj, G. Lorenzini, M. Hossein Ahmadi, and S. Emani. 2021. Improvement and nocturnal extension of the efficiency of a solar still. Hindawi Limited -International Journal of Photoenergy 2021:1–11. doi:10.1155/2021/6631121.
  • Manokar, A. M., D. P. Winston, J. D. Mondol, R. Sathyamurthy, A. E. Kabeel, and H. Panchal. 2018. Comparative study of an inclined solar panel basin solar still in passive and active mode. Solar Energy 169:206–16. doi:10.1016/j.solener.2018.04.060.
  • Manokar, A. M., D. P. Winston, R. Sathyamurthy, A. E. Kabeel, and A. R. Prasath. 2019. Experimental investigation on pyramid solar still in passive and active mode. Bubbly Flows: Analysis, Modelling & Calculation 55 (4):1045–58.
  • Mohamed, M., K. Dawood, A. I. Shehata, A. S. Shehata, A. ElnabyKabeel, K. Ramzy, A. M. Abdalla, T. Nabil, M. Elsabahy, and B. E. Elnaghi. 2022. Experimental investigation of a stepped solar still employing a phase change material, a conical tank, and a solar dish. Wiley-International Journal of Energy Research 46 (1210 October):16762–76. doi:10.1002/er.8337.
  • Mohammed Anees Sheik, M. K. A., A. D. ErdemCuce, U. Rajak, A. M. M. Saboor Shaik, Rajak, U. SaffaRiffat, S. Shaik, A. M. Manokar, and S. Riffat. 2022. A comprehensive review on recent advancements in cooling of solar photovoltaic systems using phase change materials. International Journal of Low-Carbon Technologies 17 (2022):768–83. doi:10.1093/ijlct/ctac053.
  • MohammedElhadi Attia, M. M. T. B., S. Kumar, A. Afzal, and R. S. SivakumarVaithilingam, A. Muthu Manokar, R. Sathyamurthy, A. Muthu Manokar. 2022. Water quality analysis of solar still distillate produced from various water sources of El Oued region Algeria March 2022. Desalination and Water Treatment 253:55–62. doi:10.5004/dwt.2022.28303.
  • Nair, S. S., K. P. Nair, and P. Krishnan Rajendrakumar. 2017. Evaluation of physicochemical, thermal and tribological properties of sesame oil (Sesamum indicum L.): A potential agricultural crop base stock for eco-friendly industrial lubricants. International Journal of Agricultural Resources, Governance and Ecology 13 (1):77. doi:10.1504/IJARGE.2017.084037.
  • Prasad, A. R., M. E. H. Attia, W. Al-Kouz, A. Afzal, M. M. Athikesavan, and R. Sathyamurthy. 2021. Energy and exergy efficiency analysis of solar still incorporated with copper plate and phosphate pellets as energy storage material. Environmental Science and Pollution Research 28 (35):48628–36. doi:10.1007/s11356-021-14080-5.
  • Praveen Kumar, B., D. Prince Winston, P. Pounraj, A. Muthu Manokar, and A. E. K. Ravishankar Sathyamurthy 2017. Experimental investigation on hybrid PV/T active solar still with effective heating and cover cooling method. Desalination 435:140–51. doi:10.1016/j.desal.2017.11.007.
  • Rajamanickam, M. R., and A. Ragupathy. 2012. Influence of Water Depth on Internal Heat and Mass Transfer in a Double Slope Solar Still, Energy Procedia. Energy Procedia 14:1701–08. doi:10.1016/j.egypro.2011.12.1155.
  • Rajendra Prasad, A., M. S. Mohammed El Hadi Attia, A. M. M. Ravishankar Sathyamurthy, R. Sathyamurthy, and A. Muthu Manokar. 2022. Performance improvement of solar still using phosphate granules as energy storing materials: An experimental study. Desalination and Water Treatment 250:16–26. doi:10.5004/dwt.2022.28180.
  • Rajendra Prasad, A., M. S. Ravishankar Sathyamurthy, D. Madhu, B. Mageshbabu, A. Muthu Manokar, J. Ali, and A. J. Chamkha. 2021. Effect of Design Parameters on Fresh Water Produced from Triangular Basin and Conventional Basin Solar Still. Hindawi International Journal of Photoenergy 2021: 1–8. Article ID 6619138, 8 pages. doi:10.1155/2021/6619138.
  • Rajendra Prasad, A., R. Sathyamurthy, A. Elnaby Kabeel, and A. Kumar Thakur. 2022. Performance analysis of tubular solar still with different water depths on corrugated and flat absorbers. Journal of Water Supply: Research and Technology – AQUA. doi:10.2166/aqua.2022.253.
  • Raj, G., D. Prabhansu, R. Kumar, P. Chandra, and S. Saurabh. 2019. Experimental study of solar still augmented with low-cost energy absorbing and releasing materials. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 42:1–10. doi:10.1080/15567036.2019.1587054.
  • Samee, M. A., U. K. Mirza, T. Majeed, and N. Ahmad. 2007. Design and performance of a simple single basin solar still. Renew Sust Energ Rev 11 (3):543–49.
  • Saravanakumar, R., J. Venugopal, V. T. ChikkappaUdagani, S. K. Nandha Kumar, A. E. LokanayakiKarnan, B. Madhu, R. Sathyamurthy, B. Madhu, and R. Sathyamurthy. 2022. A mini review on recent advancements in inclined solar still. EnergyReports 8 (Supplement 8):641–45. doi:10.1016/j.egyr.2022.09.174.
  • Sathyamurthy, R., A. AbdElnabykabeel, H. Arun Kumar, A. M. M. HariprasathVenkateswaran, and S. RamaniBharathwaaj. 2021. Exergy and energy analysis of tubular solar still with and without fins: A comparative theoretical and experimental approach. Environmental Science and Pollution Research. doi:10.1007/s11356-021-16065-w.
  • Shabgard, H., H. Rahimi, M. Naghashnejad, P. M. Acosta, N. Sharifi, M. Mahdavi, and A. Faghri. 2022. Thermal energy storage in desalination systems: State of the art, challenges and opportunities. Journal of Energy Storage. 52 (Part A):104799. ISSN 2352-152X. doi:10.1016/j.est.2022.104799.
  • Shahidi, F. 2005. Bailey’s Industrial Oil and Fat Products, Volume 6, Industrial and Non edible Products from Oils and Fats. 6th. Hoboken, New Jersey: Published by John Wiley & Sons.
  • Sharshir, S. W., M. A. Farahat, A. W. K. Abanob Joseph, M. A. Rozza, A. E. K. Fawzy Abou-Taleb, Z. Yuan, A. E. Kabeel, and Z. Yuan. 2022. Comprehensive thermo-enviroeconomic performance analysis of a preheating-assisted trapezoidal solar still provided with various additives. Desalination. 548 (2023):116280. ISSN 0011-9164. doi:10.1016/j.desal.116280.
  • Sharshir, S. W., A. W. Kandeal, A. M. Algazzar, M.O.A.E.S. Ayman Eldesoukey, and A. A. Hussien. 2022a. 4-E analysis of pyramid solar still augmented with external condenser, evacuated tubes, nanofluid and ultrasonic foggers: A comprehensive study. Process Safety and Environmental Protection 164 (2022):408–17. ISSN 0957-R5820. doi:10.1016/j.psep.2022.06.026.
  • Sharshir, S. W., M. A. Rozza, A. W. K. Abanob Joseph, A. A. Tareemi, A. E. K. Fawzy Abou-Taleb, F. Abou-Taleb, and A. E. Kabeel. 2022b. A new trapezoidal pyramid solar still design with multi thermal enhancers. Applied Thermal Engineering. 213 (2022):118699. ISSN 1359-4311. doi:10.1016/j.applthermaleng.2022.118699.
  • Suneesh, P. U., R. Jayaprakash, T. Arunkumar, and D. Denkenberger 2014. Effect of air flow on “V” type solar still with cotton gauze cooling.Desalination. 337:1–5.
  • Tiwari, G. N., and A. Kumar. 1988. Nocturnal water production by tubular solar stills using waste heat to preheat brine. Desalination 69 (3):309–18.

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