Experimental estimation of the performance of the homemade single slop Solar distilled
Main Article Content
Abstract
Water pollution and scarcity have created problems in all aspects of life, especially in poor countries. In This work the fabricated of a single slop distilled from cheap materials, with a glass lid for use for desalination. The study noted that solar radiation is of good magnitude in the study area for the implementation of solar energy projects. The solar-drip production increases with increased solar radiation, which increases the efficiency of the distilled, and the reduction of the water level in the basin decreases the speed of productivity and increases it, where efficiency was 40%, at the highest in the experiments 1.5 mm then rose to 50% at 1mm and increased to more than 65% at 0.5 mm.
Article Details

This work is licensed under a Creative Commons Attribution 4.0 International License.
Tikrit Journal of Pure Science is licensed under the Creative Commons Attribution 4.0 International License, which allows users to copy, create extracts, abstracts, and new works from the article, alter and revise the article, and make commercial use of the article (including reuse and/or resale of the article by commercial entities), provided the user gives appropriate credit (with a link to the formal publication through the relevant DOI), provides a link to the license, indicates if changes were made, and the licensor is not represented as endorsing the use made of the work. The authors hold the copyright for their published work on the Tikrit J. Pure Sci. website, while Tikrit J. Pure Sci. is responsible for appreciate citation of their work, which is released under CC-BY-4.0, enabling the unrestricted use, distribution, and reproduction of an article in any medium, provided that the original work is properly cited.
References
[1] Mahmood, H.Y.; E.IbrahIm, A.M. and jadan, A.O. ( 2017 ). Design and installation of (flower sun) a concentration dish and study its parameters. Tikrit Journal of Pure Science, 22 (11): 83-86.
[2] Mahmood, H.Y.; Jassim, S.A. and Hamed, N.F. (2017). Design and fabrication of Solar dish array and study it characterization. Tikrit Journal of Pure Science, 22 (11): 87-91.
[3] Mahmood, H.Y.; E.IbrahIm, A.M. and Kareem, B.K. (2018). Design and fabricate of tiny wind turbine in Tikrit – Iraq. Tikrit Journal of Pure Science, 23 (9): 89-93.
[4] Abdul-Wahab, S.A.; Al-Damkhi, A.M.; Al-Hinai, H.; Dev, R. and Tiwari, G.N. (2010).Experimental study of an inverted absorber solar still. Desalination and Water Treatment, 19: 249–254.
[5] Mehta, A.; Vyas, A.; Bodar, N. and Lathiya, D. (2011).Design of Solar Distillation System. International Journal of Advanced Science and Technology, 29: 67-74
[6] Shanmugan, S.; Janarthanan, B. and Chandrasekaran, J. (2012).Performance of single-slope single-basin solar still with sensible heat storage materials. Desalination and Water Treatment, 41: 195–203.
[7] Bhardwaj, R.; ten Kortenaar, M.V. and Mudde, R.F. (2013). Influence of condensation surface on solar distillation. Desalination, 326:37-45.
[8] Mohammed, M.F. (2014).Solar water distillation reproduction fresh water from dirty water. Diyala Journal of Engineering Sciences, 08 (01): 102-133.
[9] Sonawane, D.; Jadhav, O.; Patil, M. and Jambuti, V. (2015). Research Paper on Enhancing Solar Still Productivity by Optimizing Angle of PCM Embedded Absorber Surface. International Journal of Science Technology & Engineering , 2(2): 2349-784.
[10] Jaimes, A.S.; Arroyo, E.H. and Ramírez, Z.(2017) Experimental Evaluation of a Single Slope Solar Still. TECCIENCIA, 12(22): 63-71
[11] Abdallah, S. (2018). Productivity Enhancement of Solar Still with PV Powered Heating Coil and
Chamber Step-Wise Basin. Journal of Ecological Engineering, 19(2):8-15.
[12] Aldoori, H.W.; Ahmed, H. A. and Ahmed, M.A. (2019). Performance investigation of a solar water distiller integrated with a parabolic collector using fuzzy technique. heat transfer Asian research, 49: 120–134.
[13] Madiouli, J.; Lashin, A.; Shigidi, I.; Badruddin, I.A. and Kessentin, A. (2020). Experimental study and evaluation of single slope solar still combined with flat plate collector, parabolic trough and packed bed. Solar Energy, 196: 358-366.
[14] Tiwari, G.N. and Tiwari, K.A. (2007). Thermal modeling based on solar fraction and experimental study of the annual and seasonal performance of a single slope passive solar still: The effect of water depths. Desalination, 207: 184–204.
[15] Ahmed, M.A.; Hasan, J.I. and Sedeeq, S.I. (2018). improve the productive distillation by iron. International journal of mechanical engineering and technology, 9(13): 1593-1601.
[16] Sharma, M.; Tiwari, A.Kr. and Mishra, R.D. (2016).A review on desalination of water using single slope passive solar still. International Journal of Development Research, 06(11): 10002-10012.
[17] Sivakumar, V. and Sundaram, A.E. (2013). Improvement techniques of solar still efficiency, A review. Renewable and Sustainable Energy Reviews, 28: 246-264.