References
- A.S. Abdullah, Z.M. Omara, A. Alarjani, F.A. Essa, Experimental
investigation of a new design of drum solar still with reflectors
under different conditions, Case Stud. Therm. Eng., 24 (2021)
100850, doi: 10.1016/j.csite.2021.100850.
- A.E. Kabeel, Z.M. Omara, F.A. Essa, Improving the performance
of solar still by using nanofluids and providing vacuum,
Energy Convers. Manage., 86 (2014) 268–274.
- W.H. Alawee, F.A. Essa, S.A. Mohammed, H.A. Dhahad,
A.S. Abdullah, Z.M. Omara, Y. Gamiel, Improving the
performance of pyramid solar distiller using dangled cords
of various wick materials: novel working mechanism of wick,
Case Stud. Therm. Eng., 28 (2021) 101550, doi: 10.1016/j.csite.2021.101550.
- F.A. Essa, W.H. Alawee, S.A. Mohammed, H.A. Dhahad,
A.S. Abdullah, U.F. Alqsair, Z.M. Omara, M.M. Younes,
Improving the pyramid solar distiller performance by
using pyramidal absorber, mirrors, condenser, and thermal
storing material, Case Stud. Therm. Eng., 40 (2022) 102515,
doi: 10.1016/j.csite.2022.102515.
- F.A. Essa, W.H. Alawee, A.S. Abdullah, M. Aljaghtham,
H.A. Dhahad, A. Majdi, Z.M. Omara, Augmenting the performance
of pyramid distiller via conical absorbing surface,
reflectors, condenser, and thermal storing material, J. Energy
Storage, 55 (2022) 105597, doi: 10.1016/j.est.2022.105597.
- F.A. Essa, A.S. Abdullah, W.H. Alawee, A. Alarjani, U.F. Alqsair,
S. Shanmugan, Z.M. Omara, M.M. Younes, Experimental
enhancement of tubular solar still performance using rotating
cylinder, nanoparticles’ coating, parabolic solar concentrator,
and phase change material, Case Stud. Therm. Eng., 29 (2022)
101705, doi: 10.1016/j.csite.2021.101705.
- F.A. Essa, A.S. Abdullah, Z.M. Omara, Improving the
performance of tubular solar still using rotating drum –
experimental and theoretical investigation, Process Saf.
Environ. Prot., 148 (2021) 579–589.
- F.A. Essa, W.H. Alawee, S.A. Mohammed, H.A. Dhahad,
A.S. Abdullah, Z.M. Omara, Experimental investigation
of convex tubular solar still performance using wick and
nanocomposites, Case Stud. Therm. Eng., 27 (2021) 101368,
doi: 10.1016/j.csite.2021.101368.
- A.S. Abdullah, M.M. Younes, Z.M. Omara, F.A. Essa, New
design of trays solar still with enhanced evaporation methods –
comprehensive study, Sol. Energy, 203 (2020) 164–174.
- A.S. Abdullah, Z.M. Omara, F.A. Essa, M.M. Younes,
S. Shanmugan, M. Abdelgaied, M.I. Amro, A.E. Kabeel,
W.M. Farouk, Improving the performance of trays solar
still using wick corrugated absorber, nano-enhanced phase
change material and photovoltaics-powered heaters, J. Energy
Storage, 40 (2021) 102782, doi: 10.1016/j.est.2021.102782.
- A.S. Abdullah, Z.M. Omara, F.A. Essa, U.F. Alqsair,
M. Aljaghtham, I.B. Mansir, S. Shanmugan, W.H. Alawee,
Enhancing trays solar still performance using wick finned
absorber, nano-enhanced PCM, Alexandria Eng. J., 61 (2022)
12417–12430.
- M. El Hadi Attia, A.E. Kabeel, M. Abdelgaied, G.B. Abdelaziz,
A comparative study of hemispherical solar stills with
various modifications to obtain modified and inexpensive
still models, Environ. Sci. Pollut. Res., 28 (2021) 55667–55677.
- M.M. Younes, A.S. Abdullah, F.A. Essa, Z.M. Omara, Half barrel
and corrugated wick solar stills – comprehensive study, J. Energy
Storage, 42 (2021) 103117, doi: 10.1016/j.est.2021.103117.
- A.E. Kabeel, G.B. Abdelaziz, E.M.S. El-Said, Experimental
investigation of a solar still with composite material heat
storage: energy, exergy and economic analysis, J. Cleaner Prod.,
231 (2019) 21–34.
- A.S. Abdullah, W.H. Alawee, S.A. Mohammed, A. Majdi,
Z.M. Omara, F.A. Essa, Increasing the productivity of modified
cords pyramid solar still using electric heater and various
wick materials, Process Saf. Environ. Prot., 169 (2023) 169–176.
- S. Shanmugan, B. Janarthanan, J. Chandrasekaran, Performance
of single-slope single-basin solar still with sensible heat storage
materials, Desal. Water Treat., 41 (2012) 195–203.
- F.A. Essa, Z.M. Omara, A.S. Abdullah, A.E. Kabeel,
G.B. Abdelaziz, Enhancing the solar still performance via
rotating wick belt and quantum dots nanofluid, Case Stud.
Therm. Eng., 27 (2021) 101222, doi: 10.1016/j.csite.2021.101222.
- E.M.S. El-Said, M.A. Dahab, M. Abdelgaleel, G.B. Abdelaziz,
Productivity augmentation of a solar distiller utilizing a wire
mesh absorber with a pulsed flow regime, Desalination,
548 (2023) 116276, doi: 10.1016/j.desal.2022.116276.
- A.S. Abdullah, F.A. Essa, H.B. Bacha, Z.M. Omara, Improving
the trays solar still performance using reflectors and phase
change material with nanoparticles, J. Energy Storage, 31 (2020)
101744, doi: 10.1016/j.est.2020.101744.
- W.H. Alawee, S.A. Mohammed, H.A. Dhahad, F.A. Essa,
Z.M. Omara, A.S. Abdullah, Performance analysis of a doubleslope
solar still with elevated basin – comprehensive study,
Desal. Water Treat., 223 (2021) 13–25.
- M.A. Eltawil, Z.M. Omara, Enhancing the solar still
performance using solar photovoltaic, flat plate collector and
hot air, Desalination, 349 (2014) 1–9.
- Z.M. Omara, M.A. Eltawil, E.A. Elnashar, A new hybrid
desalination system using wicks/solar still and evacuated solar
water heater, Desalination, 325 (2013) 56–64.
- F.A. Essa, W.H. Alawee, S.A. Mohammed, A.S. Abdullah,
Z.M. Omara, Enhancement of pyramid solar distiller
performance using reflectors, cooling cycle, and dangled
cords of wicks, Desalination, 506 (2021) 115019, doi: 10.1016/j.desal.2021.115019.
- Z.M. Omara, A.S. Abdullah, F.A. Essa, M.M. Younes,
Performance evaluation of a vertical rotating wick solar still,
Process Saf. Environ. Prot., 148 (2021) 796–804.
- F.A. Essa, A.S. Abdullah, Z.M. Omara, Rotating discs solar still:
new mechanism of desalination, J. Cleaner Prod., 275 (2020)
123200, doi: 10.1016/j.jclepro.2020.123200.
- W.H. Alawee, A.S. Abdullah, H. Dhahad, A. Abdalla,
Z.M. Omara, Improving the performance of pyramid solar
still using rotating four cylinders and three electric heaters,
Process Saf. Environ. Prot., 148 (2021) 950–958.
- A.E. Kabeel, M.H. Hamed, Z.M. Omara, Augmentation of the
basin type solar still using photovoltaic powered turbulence
system, Desal. Water Treat., 48 (2012) 182–190.
- U.F. Alqsair, A.S. Abdullah, Z.M. Omara, Enhancement the
productivity of drum solar still utilizing parabolic solar
concentrator, phase change material and nanoparticles’
coating, J. Energy Storage, 55 (2022) 105477, doi: 10.1016/j.est.2022.105477.
- M.A. Elaziz, E.M.S. El-Said, A.H. Elsheikh, G.B. Abdelaziz,
Performance prediction of solar still with a high-frequency
ultrasound waves atomizer using random vector functional
link/heap-based optimizer, Adv. Eng. Softw., 170 (2022) 103142,
doi: 10.1016/j.advengsoft.2022.103142.
- 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.
- J. Ward, A plastic solar water purifier with high output,
Sol. Energy, 75 (2003) 433–437.
- Z.M. Omara, A.E. Kabeel, M.M. Younes, Enhancing the stepped
solar still performance using internal reflectors, Desalination,
314 (2013) 67–72.
- Z.M. Omara, A.E. Kabeel, M.M. Younes, Enhancing the stepped
solar still performance using internal and external reflectors,
Energy Convers. Manage., 78 (2014) 876–881.
- Y.A.F. El-Samadony, A.S. Abdullah, Z.M. Omara, Experimental
study of stepped solar still integrated with reflectors and
external condenser, Exp. Heat Transfer: J. Therm. Energy Gener.
Trans. Storage Convers., 28 (2015) 392–404.
- A.E. Kabeel, A. Khalil, Z.M. Omara, M.M. Younes, Theoretical
and experimental parametric study of modified stepped solar
still, Desalination, 289 (2012) 12–20.
- Z.M. Omara, A.E. Kabeel, The performance of different sand
beds solar stills, Green Energy, 11 (2014) 240–254.
- K.K. Murugavel, K.K. Chockalingam, K. Srithar, Progresses in
improving the effectiveness of the single basin passive solar
still, Desalination, 220 (2008) 677–686.
- V. Velmurugan, C. Deenadayalan, H. Vinod, K. Srithar,
Desalination of effluent using fin type solar still, Energy,
33 (2008) 1719–1727.
- K. Srithar, Performance analysis of vapour adsorption solar
still integrated with mini-solar pond for effluent treatment,
Int. J. Chem. Eng. Appl., 1 (2010) 336–341.
- S.A. Mohammed, A. Basem, Z.M. Omara, W.H. Alawee,
H.A. Dhahad, F.A. Essa, A.S. Abdullah, H.Sh. Majdi, I. Alshalal,
W.N.R.W. Isahak, A.A. Al-Amiery, Pyramidal solar stills
via hollow cylindrical perforated fins, inclined rectangular
perforated fins, and nanocomposites: an experimental
investigation, Sustainability, 14 (2022) 14116, doi: 10.3390/su142114116.
- F.A. Essa, Thermal Desalination Systems: From Traditionality
to Modernity and Development, D.V. Steffen, Ed., Distillation
Processes, IntechOpen, Rijeka, 2022.
- F.A. Essa, Z.M. Omara, A.S. Abdullah, S. Shanmugan,
H. Panchal, A.E. Kabeel, R. Sathyamurthy, W.H. Alawee,
A.M. Manokar, A.H. Elsheikh, Wall-suspended trays inside
stepped distiller with Al2O3/paraffin wax mixture and vapor
suction: experimental implementation, J. Energy Storage,
32 (2020) 102008, doi: 10.1016/j.est.2020.102008.
- F.A. Essa, Z.M. Omara, A. Abdullah, S. Shanmugan, H. Panchal,
A.E. Kabeel, R. Sathyamurthy, M.M. Athikesavan, A. Elsheikh,
M. Abdelgaied, B. Saleh, Augmenting the productivity of
stepped distiller by corrugated and curved liners, CuO/paraffin
wax, wick, and vapor suctioning, Environ. Sci. Pollut. Res.,
28 (2021) 56955–56965.
- A.M. Gandhi, S. Shanmugan, S. Gorjian, C.I. Pruncu,
S. Sivakumar, A.H. Elsheikh, F.A. Essa, Z.M. Omara,
H. Panchal, Performance enhancement of stepped basin solar
still based on OSELM with traversal tree for higher energy
adaptive control, Desalination, 502 (2021) 114926, doi: 10.1016/j.desal.2020.114926.
- A. Bamasag, F.A. Essa, Z.M. Omara, E. Bahgat, A.O. Alsaiari,
H. Abulkhair, R.A. Alsulami, A.H. Elsheikh, Machine learningbased
prediction and augmentation of dish solar distiller
performance using an innovative convex stepped absorber
and phase change material with nanoadditives, Process Saf.
Environ. Prot., 162 (2022) 112–123.
- M. Abd Elaziz, F.A. Essa, A.H. Elsheikh, Utilization of
ensemble random vector functional link network for freshwater
prediction of active solar stills with nanoparticles, Sustainable
Energy Technol. Assess., 47 (2021) 101405, doi: 10.1016/j.seta.2021.101405.
- A. Kabeel, Z.M. Omara, F.A. Essa, A. Abdullah, T. Arunkumar,
R. Sathyamurthy, Augmentation of a solar still distillate yield
via absorber plate coated with black nanoparticles, Alexandria
Eng. J., 56 (2017) 433–438.
- J. Holman, Experimental Methods for Engineers, 8th ed.,
McGraw-Hill Companies, New York, 2012.
- A. Elminshawy, K. Morad, N.A.S. Elminshawy, Y. Elhenawy,
Performance enhancement of concentrator photovoltaic
systems using nanofluids, Int. J. Energy Res., 45 (2020)
2959–2979.
- A.E. Kabeel, Z.M. Omara, F.A. Essa, Numerical investigation of
modified solar still using nanofluids and external condenser,
J. Taiwan Inst. Chem. Eng., 75 (2017) 77–86.
- A.E. Kabeel, Z.M. Omara, F.A. Essa, Enhancement of modified
solar still integrated with external condenser using nanofluids:
an experimental approach, Energy Convers. Manage., 78 (2014)
493–498.
- C. Elango, N. Gunasekaran, K. Sampathkumar, Thermal models
of solar still – a comprehensive review, Renewable Sustainable
Energy Rev., 47 (2015) 856–911.
- G.N. Tiwari, A.K. Mishra, M. Meraj, A. Ahmad, M.E. Khan,
Effect of shape of condensing cover on energy and exergy
analysis of a PVT-CPC active solar distillation system,
Sol. Energy, 205 (2020) 113–125.
- O. Bait, Exergy, environ–economic and economic analyses of a
tubular solar water heater assisted solar still, J. Cleaner Prod.,
212 (2019) 630–646.
- S.A. Mousavi, M. Mehrpooya, A comprehensive exergybased
evaluation on cascade absorption-compression
refrigeration system for low temperature applications - exergy,
exergoeconomic, and exergoenvironmental assessments,
J. Cleaner Prod., 246 (2020) 119005, doi: 10.1016/j.jclepro.2019.
119005.
- S.M. Parsa, A. Rahbar, D. Javadi, M. Koleini, M. Afrand,
M. Amidpour, Energy-matrices, exergy, economic, environmental,
exergoeconomic, enviroeconomic, and heat transfer
(6E/HT) analysis of two passive/active solar still water
desalination nearly 4000 m: altitude concept, J. Cleaner Prod.,
261 (2020) 121243, doi: 10.1016/j.jclepro.2020.121243.