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Articles

A solar still desalination system with enhanced productivity

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Pages 3179-3186 | Received 11 Oct 2013, Accepted 09 Feb 2014, Published online: 30 Jul 2014

References

  • M. Sakthivel, S. Shanmugasundaram, Effect of energy storage medium (black granite gravel) on the performance of a solar still, Int. J. Energy Res. 32 (2008) 68–82.10.1002/(ISSN)1099-114X
  • A. Nafey, M. Abdelkader, A. Abdelmotalip, A. Mabrouk, Solar still productivity enhancement, Energy Convers. Manage. 42 (2001) 1401–1408.10.1016/S0196-8904(00)00107-2
  • V. Velmurugan, M. Gopalakrishnan, R. Raghu, K. Srithar, Single basin solar still with fin for enhancing productivity, Energy Convers. Manage. 49 (2008) 2602–2608.10.1016/j.enconman.2008.05.010
  • V. Velmurugan, K. Srithar, Solar stills integrated with a mini solar pond—Analytical simulation and experimental validation, Desalination 216 (2007) 232–241.10.1016/j.desal.2006.12.012
  • A. Bassam, A. Hamzeh, M. Rababa’h, Experimental study of a solar still with sponge cubes in basin, Energy Convers. Manage. 44 (2003) 1411–1418.
  • A. Bilal, S. Mousa, O. Omar, E. Yaser, Experimental evaluation of a single-basin solar still using different absorbing materials, Sixth Arab International Solar Energy Conference, Bahrain, 1998.
  • B. Akash, M. Mohsen, O. Osta, Y. Elayan, Experimental evaluation of a single-basin solar still using different absorbing materials, Renewable Energy 14 (1998) 307–310.10.1016/S0960-1481(98)00082-2
  • Z. Abdel-Rehim, A. Lasheen, Improving the performance of solar desalination systems, Renewable Energy 30 (2005) 1955–1971.10.1016/j.renene.2005.01.008
  • M. Naim, M. Abd El Kawi, Non-conventional solar stills. Part 1. Non-conventional solar stills with charcoal particles as absorber medium, Desalination 153 (2003) 55–64.10.1016/S0011-9164(02)01093-7
  • Ç. Tiris, M. Tiris, İ.E. Türe, Improvement of basin type solar still performance, Renewable Energy 9 (1996) 758–761.10.1016/0960-1481(96)88394-7
  • D. Dutt, A. Kumar, J. Anand, G. Tiwari, Performance of a double-basin solar still in the presence of dye, Appl. Energy 32 (1989) 207–223.10.1016/0306-2619(89)90030-5
  • S. Nijmeh, S. Odeh, B. Akash, Experimental and theoretical study of a single-basin solar sill in Jordan, Int. Commun. Heat Mass Transfer 32 (2005) 565–572.10.1016/j.icheatmasstransfer.2004.06.006
  • S. Abdallah, M. Abu-Khader, O. Badran, Effect of various absorbing materials on the thermal performance of solar stills, Desalination 242 (2009) 128–137.10.1016/j.desal.2008.03.036
  • H. Tanaka, Y. Nakatake, Increase in distillate productivity by inclining the flat plate external reflector of a tilted-wick solar still in winter, Sol. Energy 83 (2009) 785–789.10.1016/j.solener.2008.12.001
  • H. Tanaka, Y. Nakatake, One step azimuth tracking tilted-wick solar still with a vertical flat plate reflector, Desalination 235 (2009) 1–8.10.1016/j.desal.2008.01.011
  • I. Al-Hayek, O. Badran, The effect of using different designs of solar stills on water distillation, Desalination 169 (2004) 121–127.10.1016/j.desal.2004.08.013
  • M. Smyth, A. Strong, W. Byers, B. Norton, Performance evaluation of several passive solar stills, The European Test Center for Solar Thermal Energy, papers workshop, 2002.
  • G. Zaki, A. Al-Turki, M. Al-Fatani, Experimental investigation on concentrator-assisted solar stills, Int. J. Sustainable Energy 11 (1992) 193–199.
  • Y. Yadav, Analytical performance of a solar still integrated with a flat plate solar collector: Thermosiphon mode, Energy Convers. Manage. 31 (1991) 255–263.10.1016/0196-8904(91)90079-X
  • S. Rai, D. Dutt, G. Tiwari, Some experimental studies of a single basin solar still, Energy Convers. Manage. 30 (1990) 149–153.10.1016/0196-8904(90)90026-U
  • G. Tiwari, V.S.V. Bapeshwara Rao, Transient performance of a single basin solar still with water flowing over the glass cover, Desalination 49 (1984) 231–241.10.1016/0011-9164(84)85035-3
  • S. Rai, G. Tiwari, Single basin solar still coupled with flat plate collector, Energy Convers. Manage. 23 (1983) 145–149.10.1016/0196-8904(83)90057-2
  • J. de Koning, S. Thiesen, Aqua Solaris—An optimized small scale desalination system with 40 litres output per square meter based upon solar-thermal distillation, Desalination 182 (2005) 503–509.10.1016/j.desal.2005.03.026
  • H. Fath, H. Hosny, Thermal performance of a single-sloped basin still with an inherent built-in additional condenser, Desalination 142 (2002) 19–27.10.1016/S0011-9164(01)00422-2
  • H. Fath, Solar distillation: A promising alternative for water provision with free energy, simple technology and a clean environment, Desalination 116 (1998) 45–56.10.1016/S0011-9164(98)00056-3
  • G. Tiwari, A. Kupfermann, S. Aggarwal, A new design for a double condensing chamber solar still, Desalination 114 (1997) 153–164.10.1016/S0011-9164(98)00007-1
  • A. Fatani, G. Zaki, A. Al-Turki, Improving the yield of simple basin solar stills as assisted by passively cooled condensers, Renewable Energy 4 (1994) 377–386.10.1016/0960-1481(94)90044-2
  • M. Reddy, D.J. Chandra, H. Sehgal, S. Sabberwal, A. Bhargava, D.S. Chandra, Performance of a multiple-wick solar still with condenser, Appl. Energy 13(1) (1983) 15–21.10.1016/0306-2619(83)90031-4
  • M. Aboabboud, G. Mink, A. Kudish, Condensation heat recycle in solar stills, Proceedings of the World Congress on Engineering, vol. II, London, 2009.
  • Y. Obikane, H. Al-Bilbisi, A detail design method of triangular cell multi-stage solar desalination still with wind effects, IDA World Congress—Atlantis, The Palm—Dubai, UAE, November 7–12, 2009.
  • H. Al-Hinai, M. Al-Nassri, B. Jubran, Parametric investigation of a double-effect solar still in comparison with a single-effect solar still, Desalination 150 (2002) 75–83.10.1016/S0011-9164(02)00931-1
  • J. Rheinländer, F. Gräter, Technologies for the desalination of typically 10 m3 of water per day, Desalination 139 (2001) 393–397.10.1016/S0011-9164(01)00339-3
  • S. Suneja, G. Tiwari, S. Rai, Parametric study of an inverted absorber double-effect solar distillation system, Desalination 109 (1997) 177–186.10.1016/S0011-9164(97)00063-5
  • D. Dutt, A. Kumar, J. Anand, G. Tiwari, Improved design of a double effect solar still, Energy Convers. Manage. 34 (1993) 507–517.10.1016/0196-8904(93)90082-L
  • A. Singh, G. Tiwari, Performance study of double effect distillation in a multi-wick solar still, Energy Convers. Manage. 33 (1992) 207–214.10.1016/0196-8904(92)90127-I
  • G. Tiwari, Enhancement of daily yield in a double basin solar still, Energy Convers. Manage. 25 (1985) 49–50.10.1016/0196-8904(85)90068-8
  • B. Janarthanan, J. Chandrasekaran, S. Kumar, Evaporative heat loss and heat transfer for open- and closed-cycle systems of a floating tilted wick solar still, Desalination 180 (2005) 291–305.10.1016/j.desal.2005.01.010
  • S.K. Shukla, V. Sorayan, Thermal modeling of solar stills: An experimental validation, Renewable Energy 30 (2005) 683–699.10.1016/j.renene.2004.03.009
  • A. Minasian, A. Al-Karaghouli, An improved solar still: The wick-basin type, Energy Convers. Manage. 36 (1995) 213–217.10.1016/0196-8904(94)00053-3
  • S. Al-Kharabsheh, D. Yogi Goswami, Experimental study of an innovative solar water desalination system utilizing a passive vacuum technique, Sol. Energy 75 (2003) 395–401.10.1016/j.solener.2003.08.031
  • H. Al-Hussaini, I. Smith, Enhancing of solar still productivity using vacuum technology, Energy Convers. Manage. 36(11) (1995) 1047–1051.10.1016/0196-8904(95)00003-V
  • E. Mathioulakis, V. Belessiotis, Integration of solar still in a multi-source, multi-use environment, Sol. Energy 75 (2003) 403–411.10.1016/j.solener.2003.07.006
  • N. Rahim, Utilisation of new technique to improve the efficiency of horizontal solar desalination still, Desalination 138 (2001) 121–128.10.1016/S0011-9164(01)00253-3
  • R. Sinnokrot, M. AbuArabib, A. Tamimi, Modeling of a conventional solar still with draft and humidification-dehumidification process, Proceedings of the First International Nuclear and Renewable Energy Conference (INREC10), Amman, March 21–24, 2010.
  • S. Al-Hallaj, A Comprehensive Study of Solar Desalination with a Humidification–Dehumidification Cycle, The Middle East Desalination Research Center, Muscat, 2002.
  • Y. Dai, H. Zhang, Experimental investigation of a solar desalination unit with humidification and dehumidification, Desalination 130 (2000) 169–175.10.1016/S0011-9164(00)00084-9
  • S. Abdallah, O. Badran, Sun tracking system for productivity enhancement of solar still, Desalination 220 (2008) 669–676.10.1016/j.desal.2007.02.047
  • B. Ismail, Design and performance of a transportable hemispherical solar still, Renewable Energy 34 (2009) 145–150.10.1016/j.renene.2008.03.013
  • A. Ahsan, Kh.M.S. Islam, T. Fukuhara, A. Ghazali, Experimental study on evaporation, condensation and production of a new tubular solar still, Desalination 260 (2010) 172–179.10.1016/j.desal.2010.04.044
  • M. Reali, G. Modica, Solar stills made with tubes for seawater desalting, Desalination 220 (2008) 626–632.10.1016/j.desal.2007.02.061
  • G.M. Ayoub, L. Malaeb, Developments in solar still desalination systems: A critical review, Crit. Rev. Environ. Sci. Technol. 42 (2012) 2078–2112.10.1080/10643389.2011.574104
  • M. Chaibi, A. El-Nashar, Solar thermal processes: A review of solar thermal energy technologies for water desalination, in: G. Micale et al., (Eds.), Seawater Desalination, Green Energy and Technology, Chap. 6, Springer-Verlag, Berlin, 2009, doi: 10.117/978-3-642-01150-4_6.
  • A. Khalifa, A. Hamood, On the verification of the effect of water depth on the performance of basin type solar stills, Sol. Energy 83 (2009) 1312–1321, doi:10.1016/j.rser.2009.04.006.
  • A. Tahir, Desalination of Salty Water by Solar Energy, MSc thesis, College of Engineering, University of Technology, Iraq, 1997.
  • M. Zein, S. Al-Dallah, Solar Desalination Correlation with Meteorological Parameters, Physics Department, University of Bahrain, Zallaq, 1993.
  • T. Tanaka, A. Yamashita, K. Watanabe, Experimental and analytical study of the tilted wick type solar still, Proceedings of International Solar Energy Congress, Brighton, Vol. 2 (1981) p. 1087.
  • S. Ahmed, Study of single-effect solar still with an internal condenser, Sol. Wind Technol. 5 (1988) 637–643.
  • P. Cooper, Digital simulation of transient solar still processes, Sol. Energy 12 (1969) 313–331.10.1016/0038-092X(69)90046-2
  • G. Zaki, T. El-Dali, M. El-Shafiey, Improved Performance of a Solar Still, Faculty of Engineering, Tripoli, Libya, 1992.
  • H. Garg, H. Mann, Effect of climatic, operational and design parameters on the year round performance of single-sloped and double-sloped solar still under Indian arid zone conditions, Sol. Energy 18 (1976) 159–163.10.1016/0038-092X(76)90052-9
  • G.M. Ayoub, L. Malaeb, Economic feasibility of a solar still desalination system with enhanced productivity, Desalination 335 (2014) 27–32.10.1016/j.desal.2013.12.010
  • S. Kumar, G. Tiwari, Life cycle cost analysis of single slope hybrid (PV/T) active solar still, Appl. Energy 86 (2009) 1995–2004.10.1016/j.apenergy.2009.03.005

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