References
- M. Elimelech, The global challenge for adequate and safe
water, J. Water Sup. Res. Tech. - Aqua, 55 (2006) 3–10.
- K. Srithar, T. Rajaseenivasan, M. Arulmani, R. Gnanavel, M.
Vivar, M. Fuentes, Energy recovery from a vapour compression
refrigeration system using humidification dehumidification
desalination, Desalination, 439 (2018) 155–161.
- O.A. Hamed, M.A.K. Al-Sofi, M. Imam, G.M. Mustafa, K. Ba
Mardouf, H. Al-Washmi, Thermal performance of multistage
flash distillation plants in Saudi Arabia, Desalination,
128 (2000) 281–292.
- H. Sayyaadi, A. Saffari, Thermoeconomic optimization of
multi effect distillation desalination systems, Appl. Energ.,
87 (2010) 1122–1133.
- P. Catrini, A. Cipollina, G. Micale, A. Piacentino, A. Tamburini,
Exergy analysis and thermoeconomic cost accounting
of a combined heat and power steam cycle integrated
with a multi effect distillation-thermal vapour compression
desalination plant, Energ. Convers. Manage., 149 (2017) 950–965.
- M.H. Hamed, A.E. Kabeel, Z.M. Omara, S.W. Sharshir, Mathematical
and experimental investigation of a solar humidification–dehumidification desalination unit, Desalination, 358
(2015) 9–17.
- A.E. Kabeel, M.H. Hamed, Z.M. Omara, S.W. Sharshir, Experimental
study of a humidification-dehumidification solar
technique by natural and forced air circulation, Energy, 68
(2014) 218–228.
- E.W. Tow, D.M. Warsinger, A.M. Trueworthy, J. Swaminathan,
G.P. Thiel, S.M. Zubair, A.S. Myerson, J.H. Lienhard,
Comparison of fouling propensity between reverse osmosis,
forward osmosis, and membrane distillation, J. Membr. Sci.,
556 (2018) 352–364.
- B. Bouchekima, A solar desalination plant for domestic water
needs in arid areas of South Algeria, Desalination, 153 (2003)
65–69.
- A.E. Kabeel, M.H. Hamed, Z. Omara, S. Sharshir, Water
desalination using a humidification-dehumidification technique —
a detailed review, Nat. Resour., 4 (2013) 286–305.
- H.M. Qiblawey, F. Banat, Solar thermal desalination technologies,
Desalination, 220 (2008) 633–644.
- N. Rahbar, J.A. Esfahani, Experimental study of a novel portable
solar still by utilizing the heatpipe and thermoelectric
module, Desalination, 284 (2012) 55–61.
- O.O. Badran, Experimental study of the enhancement parameters
on a single slope solar still productivity, Desalination,
209 (2007) 136–143.
- A. El-Sebaii, Effect of wind speed on active and passive solar
stills, Energ. Convers. Manage., 45 (2004) 1187–1204.
- A.M. Manokar, K.K. Murugavel, G. Esakkimuthu, Different
parameters affecting the rate of evaporation and condensation
on passive solar still–A review, Renew. Sustain. Energy
Rev., 38 (2014) 309–322.
- A.J.N. Khalifa, A.M. Hamood, Effect of insulation thickness
on the productivity of basin type solar stills: An experimental
verification under local climate, Energ. Convers. Manage.,
50 (2009) 2457–2461.
- Y. El-Samadony, A.E. Kabeel, Theoretical estimation of the
optimum glass cover water film cooling parameters combinations
of a stepped solar still, Energy, 68 (2014) 744–750.
- S.W. Sharshir, G. Peng, L. Wu, N. Yang, F.A. Essa, A.H.
Elsheikh, S.I.T. Mohamed, A.E. Kabeel, Enhancing the
solar still performance using nanofluids and glass cover
cooling: Experimental study, Appl. Therm. Eng., 113 (2017)
684–693.
- S.W. Sharshir, G. Peng, N. Yang, M.O.A. El-Samadony, A.E.
Kabeel, A continuous desalination system using humidification
– dehumidification and a solar still with an evacuated
solar water heater, Appl. Therm. Eng., 104 (2016) 734–742.
- D. Singh, G. Tiwari, Exergoeconomic, enviroeconomic and
productivity analyses of basin type solar stills by incorporating
N identical PVT compound parabolic concentrator
collectors: a comparative study, Energ. Convers. Manage., 135
(2017) 129–147.
- M.A. Eltawil, Z. Zhengming, Wind turbine-inclined still collector
integration with solar still for brackish water desalination,
Desalination, 249 (2009) 490–497.
- H. Singh, G. Tiwari, Monthly performance of passive and
active solar stills for different Indian climatic conditions,
Desalination, 168 (2004) 145–150.
- S. Abdallah, O. Badran, Sun tracking system for productivity
enhancement of solar still, Desalination, 220 (2008) 669–676.
- L. Xu, Y. Pan, F.J.S.H. Yu, Effects of water-stress on growth
and physiological changes in Pterocarya stenoptera seedlings,
Sci. Hortic., 190 (2015) 11–23.
- A. Tarmian, A.J.J.o.f.r. Mastouri, Water-repellent efficiency of
thermally modified wood as affected by its permeability, J.
Forest. Res., 29 (2018) 859–867.
- S.W. Sharshir, M.O.A. El-Samadony, G. Peng, N. Yang, F.A.
Essa, M.H. Hamed, A.E. Kabeel, Performance enhancement
of wick solar still using rejected water from humidification-dehumidification unit and film cooling, Appl. Therm.
Eng., 108 (2016) 1268–1278.
- A. Abdullah, F.A. Essa, Z.M. Omara, Effect of different wick
materials on solar still performance–a review, Int. J. Ambient
Energy, (2019) 1–28.
- J. Zhou, Y. Yin, C. Qian, Z. Liao, Y. Shu, S.J.T.J.o.H.S. Li, Biotechnology,
Seed coat morphology in Sapium sebiferum in
relation to its mechanism of water uptake, J. Hortic. Sci. Biotechnol.,
90 (2015) 613–618.
- G. Tiwari, H. Singh, R. Tripathi, Present status of solar distillation,
Sol. Energy, 75 (2003) 367–373.
- R. Kerfah, Z. Belkacem, Modelling and simulation of a modular
solar still constituted of a streaming plate collector and a
condensation chamber, Mechanics, 18 (2012) 49–55.
- Z.M. Omara, A.E. Kabeel, M. Younes, Enhancing the stepped
solar still performance using internal reflectors, Desalination,
314 (2013) 67–72.
- Z. Omara, A.E. Kabeel, M. Younes, Enhancing the stepped
solar still performance using internal and external reflectors,
Energ. Convers. Manage., 78 (2014) 876–881.
- 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.
- H.N. Panchal, Use of thermal energy storage materials for
enhancement in distillate output of solar still: A review,
Renew. Sustain. Energy Rev., 61 (2016) 86–96.
- A. Shukla, K. Kant, A. Sharma, Solar still with latent heat
energy storage: A review, Innov. Food Sci. Emerg. Technol.,
41 (2017) 34–46.
- K.H. Nayi, K.V. Modi, Pyramid solar still: A comprehensive
review, Renew. Sustain. Energy Rev., 81 (2018) 136–148.
- 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.
- G. Xie, L. Sun, T. Yan, J. Tang, J. Bao, M. Du, Model development
and experimental verification for tubular solar still operating
under vacuum condition, Energy, 157 (2018) 115–130.
- S.W. Sharshir, Y.M. Ellakany, A.M. Algazzar, A.H. Elsheikh,
M.R. Elkadeem, E.M.A. Edreis, A.S. Waly, R. Sathyamurthy,
H. Panchal, M.S. Elashry, A mini review of techniques used
to improve the tubular solar still performance for solar water
desalination, Process Saf. Environ., 124 (2019) 204–212.
- O. Bait, Exergy, environ–economic and economic analyses of
a tubular solar water heater assisted solar still, J. Clean. Prod.,
212 (2019) 630–646.
- A.H. Elsheikh, S.W. Sharshir, M. Abd Elaziz, A.E. Kabeel, W.
Guilan, Z. Haiou, Modeling of solar energy systems using
artificial neural network: A comprehensive review, Sol.
Energy, 180 (2019) 622–639.
- S.W. Sharshir, G. Peng, N. Yang, M.A. Eltawil, M.K.A. Ali,
A.E. Kabeel, A hybrid desalination system using humidification-dehumidification and solar stills integrated with evacuated
solar water heater, Energ. Convers. Manage., 124 (2016)
287–296.
- D.B. Singh, G.N. Tiwari, Enhancement in energy metrics of
double slope solar still by incorporating N identical PVT collectors,
Sol. Energy, 143 (2017) 142–161.
- L. Sahota, Shyam, G.N. Tiwari, Energy matrices, enviroeconomic
and exergoeconomic analysis of passive double slope
solar still with water based nanofluids, Desalination, 409
(2017) 66–79.
- L. Sahota, G.N. Tiwari, Effect of Al2O3 nanoparticles on the
performance of passive double slope solar still, Sol. Energy,
130 (2016) 260–272.
- L. Sahota, G.N. Tiwari, Exergoeconomic and enviroeconomic
analyses of hybrid double slope solar still loaded with nanofluids,
Energ. Convers. Manage., 148 (2017) 413–430.
- A.H. Elsheikh, S.W. Sharshir, M.E. Mostafa, F.A. Essa, M.K.
Ahmed Ali, Applications of nanofluids in solar energy: A
review of recent advances, Renew. Sustain. Energy Rev., 82
(2018) 3483–3502.
- G. Peng, H. Ding, S.W. Sharshir, X. Li, H. Liu, D. Ma, L.
Wu, J. Zang, H. Liu, W. Yu, H. Xie, N. Yang, Low-cost
high-efficiency solar steam generator by combining thin
film evaporation and heat localization: Both experimental
and theoretical study, Appl. Therm. Eng., 143 (2018)
1079–1084.
- H. Ding, G. Peng, S. Mo, D. Ma, S.W. Sharshir, N. Yang,
Ultra-fast vapor generation by a graphene nano-ratchet: a
theoretical and simulation study, Nanoscale, 9 (2017) 19066–19072.
- A.E. Kabeel, R. Sathyamurthy, S.W. Sharshir, A. Muthumanokar,
H. Panchal, N. Prakash, C. Prasad, S. Nandakumar,
M.S. El Kady, Effect of water depth on a novel absorber plate
of pyramid solar still coated with TiO2 nano black paint, J.
Clean. Prod., 213 (2019) 185–191.
- A.H. Elsheikh, S.W. Sharshir, M.K. Ahmed Ali, J. Shaibo,
E.M.A. Edreis, T. Abdelhamid, C. Du, Z. Haiou, Thin film
technology for solar steam generation: A new dawn, Sol.
Energy, 177 (2019) 561–575.
- S.W. Sharshir, G. Peng, A.H. Elsheikh, E.M.A. Edreis, M.A.
Eltawil, T. Abdelhamid, A.E. Kabeel, J. Zang, N. Yang, Energy
and exergy analysis of solar stills with micro/nano particles:
A comparative study, Energ. Convers. Manage., 177 (2018)
363–375.
- A.H. Elsheikh, M. Abd Elaziz, Review on applications of particle
swarm optimization in solar energy systems, Int. J. Environ.
Sci. Tech., 16 (2019) 1159–1170.
- S.W. Sharshir, A.H. Elsheikh, G. Peng, N. Yang, M.O.A. El-Samadony,
A.E. Kabeel, Thermal performance and exergy analysis
of solar stills – A review, Renew. Sustain. Energy Rev., 73
(2017) 521–544.
- G. Vijayakumar, M. Kummert, S.A. Klein, W.A. Beckman,
Analysis of short-term solar radiation data, Sol. Energy, 79
(2005) 495–504.
- H. Suzuki, The 10th IIR Conference on Phase-Change Materials
and Slurries for Refrigeration and Air Conditioning, Int.
J. Refrig., 36 (2013) 1790–1791.
- H. Eslamnezhad, A.B. Rahimi, Enhance heat transfer for
phase-change materials in triplex tube heat exchanger with
selected arrangements of fins, Appl. Therm. Eng., 113 (2017)
813–821.
- W. Youssef, Y.T. Ge, S.A. Tassou, CFD modelling development
and experimental validation of a phase change material
(PCM) heat exchanger with spiral-wired tubes, Energ. Convers.
Manage., 157 (2018) 498–510.
- L. Nkhonjera, T. Bello-Ochende, G. John, C.K. King’ondu,
A review of thermal energy storage designs, heat storage
materials and cooking performance of solar cookers with
heat storage, Renew. Sustain. Energy Rev., 75 (2017) 157–167.
- Q. Yu, F. Tchuenbou-Magaia, B. Al-Duri, Z. Zhang, Y. Ding,
Y. Li, Thermo-mechanical analysis of microcapsules containing
phase change materials for cold storage, Appl. Energ., 211
(2018) 1190–1202.
- A. Castell, I. Martorell, M. Medrano, G. Pérez, L.F. Cabeza,
Experimental study of using PCM in brick constructive solutions
for passive cooling, Energ. Buildings, 42 (2010) 534–540.
- E. Gratia, A. De Herde, Natural cooling strategies efficiency
in an office building with a double-skin façade, Energ. Buildings,
36 (2004) 1139–1152.
- A. de Gracia, L.F. Cabeza, Phase change materials and thermal
energy storage for buildings, Energ. Buildings, 103 (2015)
414–419.
- M.M. Naim, M.A. Abd El Kawi, Non-conventional solar stills
Part 2. Non-conventional solar stills with energy storage element,
Desalination, 153 (2003) 71–80.
- A.A. El-Sebaii, A.A. Al-Ghamdi, F.S. Al-Hazmi, A.S. Faidah,
Thermal performance of a single basin solar still with PCM
as a storage medium, Appl. Energ., 86 (2009) 1187–1195.
- A.E. Kabeel, M. Abdelgaied, Improving the performance of
solar still by using PCM as a thermal storage medium under
Egyptian conditions, Desalination, 383 (2016) 22–28.
- A.E. Kabeel, M. Abdelgaied, M. Mahgoub, The performance
of a modified solar still using hot air injection and PCM,
Desalination, 379 (2016) 102–107.
- S. Ramasamy, B. Sivaraman, Heat transfer enhancement of
solar still using phase change materials (PCMs), Int. J. Eng.
Adv. Tech., 2 (2013) 597–600.
- O. Ansari, M. Asbik, A. Bah, A. Arbaoui, A. Khmou, Desalination
of the brackish water using a passive solar still with a
heat energy storage system, Desalination, 324 (2013) 10–20.
- A.E. Kabeel, M. Elkelawy, H. Alm El Din, A. Alghrubah,
Investigation of exergy and yield of a passive solar water
desalination system with a parabolic concentrator incorporated
with latent heat storage medium, Energ. Convers. Manage.,
145 (2017) 10–19.
- S. Ravishankara, P.K. Nagarajan, D. Vijayakumar, M.K. Jawahar,
Phase change material on augmentation of fresh water
production using pyramid solar still, Int. J. Renew Energy
Dev., 2 (2013) 115–120.
- D.C. Kantesh, Design of solar still using Phase changing
material as a storage medium, Int. J. Sci. Eng. Res., 3 (2012)
1–6.
- T. Arunkumar, R. Velraj, D. Denkenberger, R. Sathyamurthy,
K. Vinothkumar, K. Porkumaran, A. Ahsan, Effect of heat
removal on tubular solar desalting system, Desalination, 379
(2016) 24–33.
- S.M. Shalaby, E. El-Bialy, A.A. El-Sebaii, An experimental
investigation of a v-corrugated absorber single-basin solar
still using PCM, Desalination, 398, 247–255.
- A.E. Kabeel, M.A. Teamah, M. Abdelgaied, G.B. Abdel Aziz,
Modified pyramid solar still with v-corrugated absorber
plate and PCM as a thermal storage medium, J. Clean. Prod.,
161 (2017) 881–887.
- T. Arunkumar, A.E. Kabeel, Effect of phase change material
on concentric circular tubular solar still - Integration meets
enhancement, Desalination, 414 (2017) 46–50.
- A.M. Radhwan, Transient performance of a stepped solar
still with built-in latent heat thermal energy storage, Desalination,
171 (2005) 61–76.
- R. Sathyamurthy, P.K. Nagarajan, J. Subramani, D. Vijayakumar,
K. Mohammed Ashraf Ali, Effect of water mass on triangular
pyramid solar still using phase change material as
storage medium, Energy Proc., 61 (2014) 2224–2228.
- A.-H.A. A.F., S.S. K., Modelling of solar distillation system
with phase change material (PCM) storage medium, Therm.
Sci., 18 (2014 ) 347–362.
- A.A.F. Al-Hamadani, S.K. Shukla, Water distillation using
solar energy system with lauric acid as storage medium, Int.
J. Energy Eng., 1 (2011) 1–8.
- F. Sarhaddi, F. Farshchi Tabrizi, H. Aghaei Zoori, S.A.H.S.
Mousavi, Comparative study of two weir type cascade solar
stills with and without PCM storage using energy and exergy
analysis, Energ. Convers. Manage., 133 (2017) 97–109.
- S.W. Sharshir, G. Peng, L. Wu, F.A. Essa, A.E. Kabeel, N. Yang,
The effects of flake graphite nanoparticles, phase change
material, and film cooling on the solar still performance,
Appl. Energ., 191 (2017) 358–366.
- V.K. Methre, M. Eswaramoorthy, Exergy analysis of the solar
still integrated nano composite phase change materials,
Appl. Sol. Energy, 51 (2015) 99–106.
- A.E. Kabeel, M. Abdelgaied, Observational study of modified
solar still coupled with oil serpentine loop from cylindrical
parabolic concentrator and phase changing material under
basin, Sol. Energy, 144 (2017) 71–78.
- W.-L. Cheng, Y.-K. Huo, Y.-L. Nian, Performance of solar still
using shape-stabilized PCM: Experimental and theoretical
investigation, Desalination, 455 (2019) 89–99.
- M. Al-harahsheh, M. Abu-Arabi, H. Mousa, Z. Alzghoul,
Solar desalination using solar still enhanced by external
solar collector and PCM, Appl. Therm. Eng., 128 (2018) 1030–1040.
- T. Arunkumar, D. Murugesan, K. Raj, D. Denkenberger, C.
Viswanathan, D.D.W. Rufuss, R. Velraj, Effect of nano-coated
CuO absorbers with PVA sponges in solar water desalting
system, Appl. Therm. Eng., 148 (2019) 1416–1424.
- A.E. Kabeel, M. Abdelgaied, A. Eisa, Effect of graphite mass
concentrations in a mixture of graphite nanoparticles and
paraffin wax as hybrid storage materials on performances of
solar still, Renew. Energ., 132 (2019) 119–128.
- M.S. Yousef, H. Hassan, An experimental work on the performance
of single slope solar still incorporated with latent heat
storage system in hot climate conditions, J. Clean. Prod., 209
(2019) 1396–1410.
- M.S. Yousef, H. Hassan, Energetic and exergetic performance
assessment of the inclusion of phase change materials (PCM)
in a solar distillation system, Energ. Convers. Manage., 179
(2019) 349–361.
- M. Abu-Arabi, M. Al-harahsheh, H. Mousa, Z. Alzghoul,
Theoretical investigation of solar desalination with solar still
having phase change material and connected to a solar collector,
Desalination, 448 (2018) 60–68.
- D. Dsilva Winfred Rufuss, L. Suganthi, S. Iniyan, P.A. Davies,
Effects of nanoparticle-enhanced phase change material
(NPCM) on solar still productivity, J. Clean. Prod., 192 (2018)
9–29.
- B.A.K. Abu-Hijleh, H.M. Rababa’h, Experimental study of a
solar still with sponge cubes in basin, Energ. Convers. Manage.,
44 (2003) 1411–1418.
- K. Kalidasa Murugavel, K.K.S.K. Chockalingam, K. Srithar,
An experimental study on single basin double slope simulation
solar still with thin layer of water in the basin, Desalination,
220 (2008) 687–693.
- A.A. El-Sebaii, S.J. Yaghmour, F.S. Al-Hazmi, A.S. Faidah,
F.M. Al-Marzouki, A.A. Al-Ghamdi, Active single basin solar
still with a sensible storage medium, Desalination, 249 (2009)
699–706.
- D.G. Harris Samuel, P.K. Nagarajan, R. Sathyamurthy, S.A.
El-Agouz, E. Kannan, Improving the yield of fresh water in
conventional solar still using low cost energy storage material,
Energ. Convers. Manage., 112 (2016) 125–134.
- A.S. Nafey, M. Abdelkader, A. Abdelmotalip, A.A. Mabrouk,
Solar still productivity enhancement, Energ. Convers. Manage.,
42 (2001) 1401–1408.
- E. El-Bialy, Performance analysis for passive single slope single
basin solar distiller with a floating absorber – An experimental
study, Energy, 68 (2014) 117–124.
- M. Sakthivel, S. Shanmugasundaram, Effect of energy storage
medium (black granite gravel) on the performance of a
solar still, Int. J. Energy Res., 32 (2008) 68–82.
- 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.
- H.N. Panchal, P.K. Shah, Enhancement of distillate output of
double basin solar still with vacuum tubes, Front. Energy., 8
(2014) 101–109.
- H.N. Panchal, Enhancement of distillate output of double
basin solar still with vacuum tubes, 2, J. King Saud Uni.– Eng.
Sci., 27 (2015) 170–175.
- Z.M. Omara, A.E. Kabeel, The performance of different sand
beds solar stills, Int. J. Green Energy., 11 (2014) 240–254.
- Ravishankar Sathyamurthy, M.E. P.K. Nagarajan, B. Madhu,
S.A. El-Agouz, A. Ahsan, D. Mageshbabu, Experimental
investigations on conventional solar still with sand heat
energy storage, Int. J. Heat Tech., 34 (2016) 597–603.
- A.S. Abdullah, Improving the performance of stepped solar
still, Desalination, 319 (2013) 60–65.