References
- M. El Hadi Attia, Z. Driss, A.E. Kabeel, M. Abdelgaied,
A.M. Manokar, R. Sathyamurthy, A.K. Hussein, Performance
evaluation of modified solar still using aluminum foil sheet as
absorber cover – a comparative study, J. Test. Eval., 49 (2021),
doi: 10.1520/JTE20200249.
- A. Khechekhouche, A.E. Kabeel, B. Benhaoua, M. El Hadi Attia,
E.M.S. El-said, Traditional solar distiller improvement by a
single external refractor under the climatic conditions of the
El-Oued region, Algeria, Desal. Water Treat., 177 (2020) 23–28.
- A.E. Kabeel, M. Abdelgaied, A. Eisa, Enhancing the performance
of single basin solar still using high thermal conductivity
sensible storage materials, J. Cleaner Prod., 183 (2018) 20–25.
- A. Khechekhouche, B. Benhaoua, M. El Hadi Attia, Z. Driss,
A. Manokar, M. Ghodbane, Polluted groundwater treatment
in southeastern Algeria by solar distillation, Algerian
J. Environ. Sci. Technol., 6 (2020) 1207–1211.
- S. Vaithilingam, S.T. Gopal, S.K. Srinivasan, A. Muthu Manokar,
R. Sathyamurthy, G.S. Esakkimuthu, R. Kumar, M. Sharifpur,
An extensive review on thermodynamic aspect based solar
desalination techniques, J. Therm. Anal. Calorim., (2020),
doi: 10.1007/s10973-020-10269-x.
- A. Khechekhouche, B.B. Haoua, A.E. Kabeel, M. El Hadi
Attia, W.M. El-Maghlany, Improvement of solar distiller
productivity by a black metallic plate of zinc as a thermal
storage material, J. Test. Eval., 49 (2021) 967–976.
- M. El Hadi Attia, Z. Driss, A.M. Manokar, R. Sathyamurthy,
Effect of aluminum balls on the productivity of solar distillate,
J. Storage Mater., 30 (2020) 101466, doi: 10.1016/j.est.2020.101466.
- C.E. Okeke, S.U. Egarievwe, A.O.E. Animalu, Effects of coal and
charcoal on solar-still performance, Energy, 15 (1990) 1071–1073.
- A.K. Rajvanshi, Effect of various dyes on solar distillation,
Sol. Energy, 27 (1981) 51–65.
- M.S. Sodha, A. Kumar, G.N. Tiwari, G.C. Pandey, Effects of
dye on the performance of a solar still, Appl. Energy, 7 (1980)
147–162.
- B.A. Akash, M.S. Mohsen, O. Osta, Y. Elayan, Experimental
evaluation of a single-basin solar still using different
absorbing materials, Renewable Energy, 14 (1998) 307–310.
- A.A. El-Sebaii, S. Aboul-Enein, M.R.I. Ramadan, E. El-Bialy,
Year-round performance of a modified single-basin solar still
with mica plate as a suspended absorber, Energy, 25 (2000)
35–49.
- A.S. Nafey, M. Abdelkader, A. Abdelmotalip, A.A. Mabrouk,
Solar still productivity enhancement, Energy Convers. Manage.,
42 (2001) 1401–1408.
- K.K. Murugavel, K. Srithar, Performance study on basin type
double slope solar still with different wick materials and
minimum mass of water, Renewable Energy, 36 (2011) 612–620.
- P.K. Srivastava, S.K. Agrawal, Experimental and theoretical
analysis of single sloped basin type solar still consisting
of multiple low thermal inertia floating porous absorbers,
Desalination, 311 (2013) 198–205.
- Dr. S. Shanmugan, Experimental investigation of various
energy absorbing materials on performance of single slope
single basin solar still with hot water provision, Int. J. Innovative
Res. Sci. Eng. Technol., 2 (2013) 7760–7767.
- S. Shanmuga Priya, U.I. Mahadi, Effect of different absorbing
materials on solar distillation under the climatic condition
of Manipal, Int. J. Appl. Innovation Eng. Manage., 2 (2013)
301–304.
- T.V. Arjunan, H.S. Aybar, P. Sadagopan, B.S. Chandran,
S. Neelakrishnan, N. Nedunchezhian, The effect of energy
storage materials on the performance of a simple solar still,
Energy Sources Part A, 36 (2014) 131–141.
- P. Dumka, A. Sharma, Y. Kushwah, A.S. Raghav, D.R. Mishra,
Performance evaluation of single slope solar still augmented
with sand-filled cotton bags, J. Storage Mater., 25 (2019) 100888,
doi: 10.1016/j.est.2019.100888.
- G.M. Cappelletti, An experiment with a plastic solar still,
Desalination, 142 (2002) 221–227.
- M.K. Phadatare, S.K. Verma, Influence of water depth
on internal heat and mass transfer in a plastic solar still,
Desalination, 217 (2007) 267–275.
- R. Bhardwaj, M.V. ten Kortenaar, R.F. Mudde, Inflatable
plastic solar still with passive condenser for single family
use, Desalination, 398 (2016) 151–156.
- S.H. Sengar, Y.P. Khandetod, A.G. Mohod, New Innovation of
low cost solar still, Eur. Int. J. Sustainable Dev., 1 (2012) 315–315.
- J.A. Duffie, New materials in solar energy utilization, Sol.
Energy, 6 (1962) 114–118.
- D. Mugisidi, O. Heriyani, H. Fathurahman, Comparison of
plastic and stainless-steel as solar still material, IOP Conf.
Ser.: Mater. Sci. Eng., 403 (2018) 012089.
- G.N. Tiwari, G.A. Mohamed Selim, Double slope fibre
reinforced plastic (FRP) multiwick solar still, Solar Wind
Technol., 1 (1984) 229–235.
- Y.P. Yadav, G.N. Tiwari, Monthly comparative performance of
solar stills of various designs, Desalination, 67 (1987) 565–578.
- Y.P. Yadav, G.N. Tiwari, Demonstration plants of fibre
reinforced plastic multiwick solar still: an experimental study,
Solar Wind Technol., 6 (1989) 653–666.
- G.N. Tiwari, A.K. Singh, Thermal efficiency of double slope
FRP solar distiller: an analytical and experimental studies,
Desalination, 82 (1991) 221.
- A.Kr. Tiwari, A. Somwanshi, Techno-economic analysis of mini
solar distillation plants integrated with reservoir of garden
fountain for hot and dry climate of Jodhpur (India), Sol.
Energy, 160 (2018) 216–224.
- P. Pal, R. Dev, Experimental study on modified double slope
solar still and modified basin type double slope multiwick
solar still, Int. J. Civ. Environ. Eng., 10 (2016) 70–75.
- S. Kumar, G.N. Tiwari, Performance evaluation of an active
solar distillation system, Energy, 21 (1996) 805–808.
- V. Ramanathan, B. Kanimozhi, V.K. Bhojwani, Experimental
study on productivity of modified single-basin solar still
with a flat plate absorber, IOP Conf. Ser.: Mater. Sci. Eng.,
197 (2017) 012032.
- G.N. Tiwari, Feasibility study of solar distillation plants in
south pacific countries, Desalination, 83 (1991) 223–232.
- V. Krishnaswamy, R. Ali, M. Vedpathak, Experimental
Investigation of V-Type Solar Still Coupled with Solar Water
Heater, SSRN Electronic Journal, Mahatma Education Society’s
Transactions and Journals’ Conference Proceedings, Conference
on Technologies for Future Cities (CTFC), 2019, pp. 1–6.
Available at: http://ssrn.com/link/2019-CTFC.html
- P. Pal, A.K. Nayak, R. Dev, A modified double slope basin
type solar distiller: experimental and enviro–economic study,
EVERGREEN Joint J. Novel Carbon Resour. Sci. Green Asia
Strategy, 5 (2018) 52–61.
- T. Elango, K.K. Murugavel, The effect of the water depth on
the productivity for single and double basin double slope
glass solar stills, Desalination, 359 (2015) 82–91.
- T. Rajaseenivasan, A.P. Tinnokesh, G. Rajesh Kumar, K. Srithar,
Glass basin solar still with integrated preheated water supply
– theoretical and experimental investigation, Desalination,
398 (2016) 214–221.
- B. Nasri, A. Benatiallah, S. Kalloum, D. Benatiallah, Improvement
of glass solar still performance using locally available materials
in the southern region of Algeria, Groundwater Sustainable
Dev., 9 (2019) 100213, doi: 10.1016/j.gsd.2019.100213.
- M. Abu-Arabi, M. Al-harahsheh, M. Ahmad, H. Mousa,
Theoretical modeling of a glass-cooled solar still incorporating
PCM and coupled to flat plate solar collector, J. Energy Storage,
29 (2020) 101372, doi: 10.1016/j.est.2020.101372.
- A. Alaudeen, A.S.A. Thahir, K. Vasanth, A.M.I. Tom, K. Srithar,
Experimental and theoretical analysis of solar still with glass
basin, Desal. Water Treat., 54 (2015) 1489–1498.
- T. Arunkumar, K. Vinothkumar, A. Ahsan, R. Jayaprakash,
S. Kumar, Experimental study on various solar still designs,
ISRN Renewable Energy, 2012 (2012) 569381, doi:
10.5402/2012/569381.
- A. El-Bahi, D. Inan, Analysis of a parallel double glass solar
still with separate condenser, Renewable Energy, 17 (1999)
509–521.
- B. Nasri, A. Benatiallah, S. Kalloum, D. Benatiallah, Improvement
of glass solar still performance using locally available materials
in the southern region of Algeria, Groundwater Sustainable
Dev., 9 (2019) 100213, doi: 10.1016/j.gsd.2019.100213.
- A.M. Manokar, D.P. Winston, Comparative study of finned
acrylic solar still and galvanised iron solar still, Mater. Today:
Proc., 4 (2017) 8323–8327.
- A.M. Manokar, D.P. Winston, Experimental analysis of single
basin single slope finned acrylic solar still, Mater. Today:
Proc., 4 (2017) 7234–7239.
- A.M. Manokar, Y. Taamneh, A.E. Kabeel, D.P. Winston,
P. Vijayabalan, D. Balaji, R. Sathyamurthy, S.P. Sundar,
D. Mageshbabu, Effect of water depth and insulation on the
productivity of an acrylic pyramid solar still – an experimental
study, Groundwater Sustainable Dev., 10 (2020) 100319,
doi: 10.1016/j.gsd.2019.100319.
- A.N. Shmroukh, S. Ookawara, Evaluation of transparent
acrylic stepped solar still equipped with internal and external
reflectors and copper fins, Therm. Sci. Eng. Prog., 18 (2020)
100518, doi: 10.1016/j.tsep.2020.100518.
- P. Pal, R. Dev, Performance study of modified basin-type
single-slope solar distiller, Euro-Mediterr. J. Environ. Integr.,
3 (2018) 37, doi: 10.1007/s41207-018-0081-x.
- M.S.S. Abujazar, S. Fatihah, A.E. Kabeel, Seawater desalination
using inclined stepped solar still with copper trays in
a wet tropical climate, Desalination, 423 (2017) 141–148.
- M.S.S. Abujazar, S. Fatihah, E.R. Lotfy, A.E. Kabeel, S. Sharil,
Performance evaluation of inclined copper-stepped solar
still in a wet tropical climate, Desalination, 425 (2018) 94–103.
- M. Elashmawy, M.M.Z. Ahmed, Enhancing tubular solar
still productivity using composite aluminum/copper/sand
sensible energy storage tubes, Sol. Energy Mater. Sol. Cells,
221 (2021) 110882, doi: 10.1016/j.solmat.2020.110882.
- A.E. Kabeel, M. Abdelgaied, K. Harby, A. Eisa, Augmentation
of diurnal and nocturnal distillate of modified tubular solar
still having copper tubes filled with PCM in the basin, J. Energy
Storage, 32 (2020) 101992, doi: 10.1016/j.est.2020.101992.
- H.N. Panchal, P.K. Shah, Improvement of solar still productivity
by energy absorbing plates, J. Renewable Energy Environ.,
1 (2014) 1–7.
- M.K. Gnanadason, P.S. Kumar, V.H. Wilson, A. Kumaravel,
Productivity enhancement of a-single basin solar still,
Desal. Water Treat., 55 (2015) 1998–2008.
- A.K. Thakur, V.P. Chandramohan, Productivity Enhancement
of Passive Type Solar Still Using Copper and Aluminum
Based Absorber Plate with Al2O3 NanoFluid in Water Basin,
S. Singh, V. Ramadesigan, Eds., Advances in Energy Research,
Vol. 2, Springer Proceedings in Energy, Springer, Singapore,
2020, pp. 273–281.
- D.A. Balladin, O. Headley, A. Roach, Evaluation of a concrete
cascade solar still, Renewable Energy, 17 (1999) 191–206.
- F. Muñoz, E. Barrera, A. Ruiz, E.M. Martínez, N. Chargoy,
Long-term experimental theoretical study on several singlebasin
solar stills, Desalination, 476 (2020) 114241, doi: 10.1016/j.
desal.2019.114241.
- L.D. Jathar, S. Ganesan, Statistical analysis of brick, sand
and concrete pieces on the performance of concave type
stepped solar still, Int. J. Ambient Energy, (2020) 1–17,
doi: 10.1080/01430750.2020.1848918.
- A.M. Manokar, D.P. Winston, A.E. Kabeel, R. Sathyamurthy,
Sustainable fresh water and power production by integrating
PV panel in inclined solar still, J. Cleaner Prod., 172 (2018)
2711–2719.
- A.M. Manokar, M. Vimala, D.P. Winston, R. Sathyamurthy,
A.E. Kabeel, Effect of Insulation on Energy and Exergy
Effectiveness of a Solar Photovoltaic Panel Incorporated
Inclined Solar Still—An Experimental Investigation, A. Kumar,
O. Prakash, Eds., Solar Desalination Technology. Green Energy
and Technology, Springer, Singapore, 2019, pp. 275–292.
- C. Sasikumar, A.M. Manokar, M. Vimala, D.P. Winston,
A.E. Kabeel, R. Sathyamurthy, A.J. Chamkha, Experimental
studies on passive inclined solar panel absorber solar still,
J. Therm. Anal. Calorim., 139 (2020) 3649–3660.
- A.M. Manokar, A.E. Kabeel, R. Sathyamurthy, D. Mageshbabu,
B. Madhu, P. Anand, P. Balakrishnan, Effect of mass flow rate
on fresh water improvement from inclined PV panel basin
solar still, Mater. Today: Proc., 32 (2020) 374–378.
- A.M. Manokar, D.P. Winston, J.D. Mondol, R. Sathyamurthy,
A.E. Kabeel, H. Panchal, Comparative study of an inclined
solar panel basin solar still in passive and active mode, Sol.
Energy, 169 (2018) 206–216.
- A.M. Manokar, M. Vimala, R. Sathyamurthy, A.E. Kabeel,
D.P. Winston, A.J. Chamkha, Enhancement of potable water
production from an inclined photovoltaic panel absorber
solar still by integrating with flat-plate collector, Environ. Dev.
Sustainability, 22 (2020) 4145–4167.
- A.M. Manokar, Experimental study on effect of different
mass flow rate in an inclined solar panel absorber solar still
integrated with spiral tube water heater, Desal. Water Treat.,
176 (2020) 285–291.
- Y. Taamneh, A.M. Manokar, M.M. Thalib, A.E. Kabeel,
R. Sathyamurthy, A.J. Chamkha, Extraction of drinking water
from modified inclined solar still incorporated with spiral tube
solar water heater, J. Water Process Eng., 38 (2020) 101613,
doi: 10.1016/j.jwpe.2020.101613.
- http://www.primap.com/wsen/Maps/Map Collection/National
Maps/Algeria-Satellite-4000x3816.html
- A.A. El-Sebaii, M. El-Naggar, Year round performance and
cost analysis of a finned single basin solar still, Appl. Therm.
Eng., 110 (2017) 787–794.
- G.N. Tiwari, S.A. Lawrence, New heat and mass transfer
relations for a solar still, Energy Convers. Manage., 31 (1991)
201–203.
- G.N. Tiwari, V. Dimri, A. Chel, Parametric study of an active and
passive solar distillation system: energy and exergy analysis,
Desalination, 242 (2009) 1–18.