References
- H. Kazemi, K. Fallah, M.J. Hosseini, A review of solar energy
driven HDH and solar still desalination technologies,
Sol. Energy Res., 2 (2017) 79–87.
- H. Manchanda, M. Kumar, Study of water desalination
techniques and a review on active solar distillation methods,
Environ. Prog. Sustainable Energy, 37 (2018) 444–464.
- V.G. Gude, N. Nirmalakhandan, S. Deng, Desalination using
solar energy: towards sustainability, Energy, 36 (2011) 78–85.
- A.M. Baniyounes, M.G. Rasul, M.M.K. Khan, Assessment of solar
assisted air conditioning in Central Queensland’s subtropical
climate, Australia, Renewable Energy, 50 (2013) 334–341.
- I. Al-Hayeka, O.O. Badran, The effect of using different designs
of solar stills on water distillation, Desalination, 169 (2004)
121–127.
- O.O. Badran, Experimental study of the enhancement
parameters on a single slope solar still productivity,
Desalination, 209 (2007) 136–143.
- V. Velmurugan, K. Srithar, Performance analysis of solar stills
based on various factors affecting the productivity—a review,
Renewable Sustainable Energy Rev., 15 (2011) 1294–1304.
- T. Rajaseenivasan, P. Nelson Raja, K. Srithar, An experimental
investigation on a solar still with an integrated flat plate
collector, Desalination, 347 (2014) 131–137.
- M.A. Samee, U.K. Mirza, T. Majeed, N. Ahmad, Design and
performance of a simple single basin solar still, Renewable
Sustainable Energy Rev., 11 (2007) 543–549.
- A. Safwat Nafey, M. Abdelkader, A. Abdelmotalip,
A.A. Mabrouk, Parameters affecting solar still productivity,
Energy Convers. Manage., 41 (2000) 1797–1809.
- A.F. Muftah, M.A. Alghoul, A. Fudholi, M.M. Abdul-Majeed,
K. Sopian, Factors affecting basin type solar still productivity:
a detailed review, Renewable Sustainable Energy Rev.,
32 (2014) 430–447.
- O.O. Badran, H.A. Al-Tahaineh, The effect of coupling a flatplate
collector on the solar still productivity, Desalination,
183 (2005) 137–142.
- J. Joseph, R. Saravanan, S. Renganarayanan, Studies on a singlestage
solar desalination system for domestic applications,
Desalination, 173 (2005) 77–82.
- R. Sathyamurthy, S.A. El-Agouz, V. Dharmaraj, Experimental
analysis of a portable solar still with evaporation and
condensation chambers, Desalination, 367 (2015) 180–185.
- A.E. Kabeel, Z.M. Omara, M.M. Younes, Techniques used to
improve the performance of the stepped solar still—a review,
Renewable Sustainable Energy Rev., 46 (2015) 178–188.
- R. Sathyamurthy, D.G. Harris Samuel, P.K. Nagarajan,
T. Arunkumar, Geometrical variations in solar stills for
improving the fresh water yield—a review, Desal. Water Treat.,
57 (2016) 21145–21159.
- S. Abdallah, O. Badran, M.M. Abu-Khader, Performance
evaluation of a modified design of a single slope solar still,
Desalination, 219 (2008) 222–230.
- K.V. Modi, D.L. Shukla, D.B. Ankoliya, A comparative
performance study of double basin single slope solar still
with and without using nanoparticles, J. Sol. Energy Eng.,
141 (2019) 031008 (10 pages), doi: 10.1115/1.4041838.
- G.N. Tiwari, Md. Meraj, M.E. Khan, V.K. Dwevedi, Effect
of series and parallel combination of photovoltaic thermal
collectors on the performances of integrated active solar
still, J. Therm. Sci. Eng. Appl., 14 (2022) 081006 (11 pages),
doi: 10.1115/1.4053055.
- Y.A. Abakr, Member ASME, A.F. Ismail, Theoretical and
experimental investigation of a novel multistage evacuated
solar still, J. Sol. Energy Eng., 127 (2005) 381–385.
- A.Z. Al-Garni, Productivity enhancement of solar still using
water heater and cooling fan, J. Sol. Energy Eng., 134 (2012)
031006 (8 pages), doi: 10.1115/1.4005760.
- A. Kr. Tiwari, G.N. Tiwari, Effect of cover inclination and
water depth on performance of a solar still for Indian climatic
conditions, J. Sol. Energy Eng., 130 (2008) 024502 (4 pages),
doi: 10.1115/1.2844450.
- T. Arunkumar, R. Jayaprakash, D. Denkenberger, A. Ahsan,
M.S. Okundamiya, S. kumar, H. Tanaka, H.Ş. Aybar,
An experimental study on a hemispherical solar still,
Desalination, 286 (2012) 342–348.
- O.M. Haddad, M.A. Al-Nimr, A. Maqableh, Enhanced solar
still performance using a radiative cooling system, Renewable
Energy, 21 (2000) 459–469.
- M. Abu-Arabi, Y. Zurigat, H. Al-Hinai, S. Al-Hiddabi, Modeling
and performance analysis of a solar desalination unit with
double-glass cover cooling, Desalination, 143 (2002) 173–182.
- M.A. Al-Nimr, W.A. Al-Ammari, M.-E. Dahdolan, Utilizing
the evaporative cooling to enhance the performance of a
solar TEG system and to produce distilled water, Sol. Energy,
146 (2017) 209–220.
- R. Sathyamurthy, S.A. El-Agouz, P.K. Nagarajan, J. Subramani,
T. Arunkumar, D. Mageshbabu, B. Madhu, R. Bharathwaaj,
N. Prakash, A review of integrating solar collectors to solar still,
Renewable Sustainable Energy Rev., 77 (2017) 1069–1097.
- H.N. Panchal, Performance analysis of solar still with cow
dung cakes and blue metal stones, Front. Energy, 9 (2015)
180–186.
- BA. 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.
- S. Abdallah, M.M. Abu-Khader, O. Badran, Effect of various
absorbing materials on the thermal performance of solar stills,
Desalination, 242 (2009) 128–137.
- R. Gugulothu, N.S. Somanchi, R. Sri Rama Devi, H.B. Banoth,
Experimental investigations on performance evaluation of
a single basin solar still using different energy absorbing
materials, Aquat. Procedia, 4 (2015) 1483–1491.
- G. Bansal, D.B. Singh, C. Kishore, V. Dogra, Effect of absorbing
material on the performance of solar still: a mini review,
Mater. Today Proc., 26 (2020) 1884–1887.
- S.A. Atouei, A.A. Ranjbar, A. Rezania, Experimental
investigation of two-stage thermoelectric generator system
integrated with phase change materials, Appl. Energy,
208 (2017) 332–343.
- S. Abdallah, M.T. Nasir, D. Afaneh, Performance evaluation
of spherical and pyramid solar stills with chamber stepwise
basin, Desal. Water Treat., 218 (2021) 119–125.
- M. El Hadi Attia, A.E. Kabeel, M. Abdelgaied, F.A. Essa,
Z.M. Omara, Enhancement of hemispherical solar still
productivity using iron, zinc and copper trays, Sol. Energy,
216 (2021) 295–302.
- M. Mohsenzadeh, L. Aye, P. Christopher, Development
and experimental analysis of an innovative
self-cleaning
low vacuum hemispherical floating solar still for low-cost
desalination, Energy Convers. Manage., 251 (2022) 114902,
doi: 10.1016/j.enconman.2021.114902.
- S.M. Aldarabseh, S. Abdallah, Experimental and numerical
investigation of a semispherical solar still, chamber stepwise
basin, with and without a photovoltaic-powered electrical
heater, J. Sol. Energy Eng., 144 (2022) 031006 (14 pages),
doi: 10.1115/1.4053461.
- Y.H. Zurigat, M.K. Abu-Arabi, Modelling and performance
analysis of a regenerative solar desalination unit, Appl.
Therm. Eng., 24 (2004) 1061–1072.
- O.A. Alduchov, R.E. Eskridge, Improved Magnus form
approximation of saturation vapor pressure, J. Appl. Meteorol.
Climatol., 35 (1996) 601–609.
- K. Srithar, A. Mani, Analysis of a single cover FRP flat plate
collector for treating tannery effluent, Appl. Therm. Eng.,
24 (2004) 873–883.
- J.A. Duffie, W.A. Beckman, N. Blair, Solar Engineering of
Thermal Processes, Photovoltaics and Wind, John Wiley &
Sons, 2020.
- S. Abdallah, H. Saleet, Enhancing Productivity of Solar Still
with Pyramid Chamber Step-Wise Basin Design, P. Rajendran,
N. Mazlan, A. Rahman, N. Suhadis, N. Razak, M. Abidin, Eds.,
Proceedings of International Conference of Aerospace and
Mechanical Engineering 2019, Lecture Notes in Mechanical
Engineering, Springer, Singapore, 2020. doi: 10.1007/978-981-15-4756-0_8.