Heat and Mass Transfer and Thermo Physical Analysis of Water Distillation Using Passive Solar Still
- 1 Principal, Jayaraj Annapackiam CSI Polytechnic College, Nazareth, Tamil Nadu, India
- 2 Principal, K.S.R. College of Engineering, Tiruchengode, Tamil Nadu, India
- 3 Professor in Technology Management, Vellore Institute of Technology, Vellore, Tamil Nadu, India
Abstract
The demand of fresh water is becoming an increasingly important issue acro ss the world. To alleviate this problem, a single slope single basin solar still was desig ned and tested. Top glass cover 9 ° slope ensures a very good transmission of solar radiation inside the still. In this paper a review of factors that improve the performance of the still is presented. Energy balances are made f or each element of the still; solar time, direction of beam of radiati on, clear sky radiation, optical properties of the cover, convec tion outside the still, convection and evaporation inside are accounted. Theoretical analysis of the heat and mass transfer mechanisms inside the solar still has been developed to find out heat transfer coefficients such as internal and external heat transfer modes and thermo physical properties such as dynamic viscosity, density, thermal conductivity, latent heat of evaporation and saturated vapor pressure for passive solar distillation system. Heat transfer coefficients were estimated for the present system since the still efficiency depends on heat transfer modes. It is also suggested that the water temperature plays a vital role in the distilla te output since it increases significantly with the rise of basin water temperature. It is also found that the rise in water temperature increases the evaporative heat transfer coefficient value significantly.
- Sampathkumar, K., Senthil Kumar, P. and Pitchandi, P. (2008) Performance of a Pyramid Solar Still. International Conference on Fascinating, Advancement in Mechanical Engineering, 1, 11-13.
- Arunkumar, T., Jayaprakash, R., Prakash, A., Suneesh, P.U., Karthik, M. and Kumar, S. (2016) Study of Thermo Physical Properties and an Improvement in Production of Distillate Yield in Pyramid Solar Still with Boosting Mirror. Indian Journal of Science and Technology, 3, 879-883. https://doi.org/10.17485/ijst/2010/v3i8.22
- Omri, A., Orfi, J. and Nasrallah, S.B. (2005) Natural Convection Effects in Solar Stills. Desalination, 173, 29-42. https://doi.org/10.1016/j.desal.2005.04.025
- Velmurugan, V., Pandiarajan, P., Guruparan, P., Harihara Subramanian, L., David Prabaharan, C. and Srithar, K. (2009) Integrated Performance of Stepped and Single Basin Solar Stills with Mini Solar Pond. Desalination, 249, 902-909. https://doi.org/10.1016/j.desal.2009.06.070
- KoilrajGnanadason, M., Senthil Kumar, P., Wilson, V.H. and Kumaravel, A. (2013) Comparison between Performance Analyses between Single Basin Solar Still with and without Use of Vacuum. International Review of Mechanical Engineering (IREME), 7, 1495-1506.
- Harris Samuel, D.G., Nagarajan, P.K., Sathyamurthy, R., Agouz, S.A.El. and Kannan, E. (2016) Improving the Yield of Fresh Water in Conventional Solar Still Using Low Cost Energy Storage Material. Energy Convention & Management, 112, 125-134. https://doi.org/10.1016/j.enconman.2015.12.074
- Panchal, H.N. (2013) Enhancement of Distillate Output of Double Basin Solar Still with Vacuum Tubes. Journal of King Saud University—Engineering Sciences, 27, 170-175. https://doi.org/10.1016/j.jksues.2013.06.007
- Phillips Agboola, O., Al-mutaz, I.S., Orfi, J. and Egelioglu, F. (2014) Economic Investigation of Different Configurations of Inclined Water Desalination Systems. Advances in Mechanical Engineering, 2014, Article ID: 925976. https://doi.org/10.1155/2014/925976
- KoilrajGnanadason, M., Senthil Kumar, P., Wilson, V.H. and Kumaravel, A. (2014) Productivity Enhancement of a Single Basin Solar Still. Desalination and Water Treatment (TDWT), 55, 1998-2008. https://doi.org/10.1080/19443994.2014.930701
- Badran, O.O. and Abu-Khader, M.M. (2007) Evaluating Thermal Performance of a Single Slope Solar Still. Heat and Mass Transfer, 43, 985-995. https://doi.org/10.1007/s00231-006-0180-0
- Kalidasa Murugavel, K., Chockalingam, Kn.K.S.K. and Srithar, K. (2009) Modeling and Verification of Double Slope Single Basin Solar Still Using Laboratory and Actual Solar Conditions. Jordan Journal of Mechanical and Industrial Engineering, 3, 40-51.