References
- N. Misdan, W.J. Lau, A.F. Ismail, Seawater reverse osmosis
(SWRO) desalination by thin-film composite membrane —
current development, challenges and future prospects,
Desalination, 287 (2011) 228–237.
- A. Lilane, D. Saifaoui, S. Hariss, H. Jenkal, M. Chouiekh,
Modeling and simulation of the performances of the reverse
osmosis membrane, Mater. Today Proc., 24 (2019) 114–118.
- W. Khiari, M. Turki, J. Belhadj, Robust DC-bus voltage control
for batteryless brackish water reverse osmosis desalination
prototype operating with variable wind and solar irradiation,
Int. J. Renewable Energy Res., 8 (2017) 1544–1552.
- R. Danoun, Desalination Plants: Potential Impacts of Brine
Discharge on Marine Life, The Ocean Technology Group, The
University of Sydney, Australia, 2007.
- A. Lilane, D. Saifaoui, Y. Aroussy, S. Hariss, M. Oulhazzan,
Experimental study of a pilot membrane desalination system:
the effects of transmembrane pressure, Mater. Today Proc.,
30 (2020) 970–975.
- B.D. Negewo, Ed., Renewable Energy Desalination: An
Emerging Solution to Close the Water Gap in the Middle East
and North Africa, World Bank Publications, 2012.
- A. Al-Karaghouli, L.L. Kazmerski, Energy consumption and
water production cost of conventional and renewable-energy powered
desalination processes, Renewable Sustainable Energy
Rev., 24 (2012) 343–356.
- M.A. Dawoud, M.M. Al Mulla, Environmental impacts of
seawater desalination: Arabian Gulf case study, Int. J. Environ.
Sustainability, 1 (2012) 22–37.
- S.A. Avlonitis, K. Kouroumbas, N. Vlachakis, Energy
consumption and membrane replacement cost for seawater
RO desalination plants, Desalination, 157 (2003) 151–158.
- T.M. Missimer, N. Ghaffour, A.H. Dehwah, R. Rachman,
R.G. Maliva, G. Amy, Subsurface intakes for seawater
reverse osmosis facilities: capacity limitation, water quality
improvement, and economics, Desalination, 322 (2013) 37–51.
- P.S. Bhambare, M.C. Majumder, C.V. Sudhir, Solar thermal
desalination: a sustainable alternative for sultanate of Oman,
Int. J. Renewable Energy Res., 8 (2018) 733–751.
- J.S. Kim, J. Chen, H.E. Garcia, Modeling, control, and dynamic
performance analysis of a reverse osmosis desalination plant
integrated within hybrid energy systems, Energy, 112 (2016)
52–66.
- K. Quteishat, Abu-Arabi, Promotion of Solar Desalination in the
MENA Region, Middle East Desalination Res. Cent., Muscat,
Oman, 2012.
- N. Kannan, D. Vakeesan, Solar energy for future world –
a review, Renewable Sustainable Energy Rev., 62 (2016)
1092–1105.
- Solar Resource Data: Solargis © 2019 The World Bank, Source:
Global Solar Atlas 2.0. Available at: https://solargis.com/mapsand-
gis-data/download/world, consulted 31/05/2020
- M. Qadir, B.R. Sharma, A. Bruggeman, R. Choukr-Allah,
F. Karajeh, Non-conventional water resources and opportunities
for water augmentation to achieve food security in water scarce
countries, Agric. Water Manage., 87 (2007) 2–22.
- R. Ragab, A. Hamdy, Water Management Strategies to Combat
Drought in the Semiarid Regions, Water Manag. Drought Mitig.
Mediterr. Cent. Int. Hautes Etudes Agron. Méditerranéennes
Tecnomack–Bari Italy, 2004,
pp. 47–112.
- Z. Al Suleimani, V.R. Nair, Desalination by solar-powered
reverse osmosis in a remote area of the Sultanate of Oman,
Appl. Energy, 65 (2000) 367–380.
- D. Herold, A. Neskakis, A small PV-driven reverse osmosis
desalination plant on the island of Gran Canaria, Desalination,
137 (2001) 285–292.
- M. Thomson, D. Infield, A photovoltaic-powered seawater
reverse-osmosis system without batteries, Desalination,
153 (2003) 1–8.
- I. de la Nuez Pestana, F.J.G. Latorre, C.A. Espinoza,
A.G. Gotor, Optimization of RO desalination systems powered
by renewable energies. Part I: wind energy, Desalination,
160 (2004) 293–299.
- E.S. Mohamed, G. Papadakis, Design, simulation and economic
analysis of a stand-alone reverse osmosis desalination unit
powered by wind turbines and photovoltaics, Desalination,
164 (2004) 87–97.
- E.S. Mohamed, G. Papadakis, E. Mathioulakis, V. Belessiotis,
A direct coupled photovoltaic seawater reverse osmosis
desalination system toward battery based systems—a technical
and economical experimental comparative study, Desalination,
221 (2008) 17–22.
- M. Monnot, G.D.M. Carvajal, S. Laborie, C. Cabassud,
R. Lebrun, Integrated approach in eco-design strategy for
small RO desalination plants powered by photovoltaic energy,
Desalination, 435 (2018) 246–258.
- I.D. Spyrou, J.S. Anagnostopoulos, Design study of a standalone
desalination system powered by renewable energy
sources and a pumped storage unit, Desalination, 257 (2010)
137–149.
- A. Al-Karaghouli, L. Kazmerski, Economic and technical
analysis of a reverse-osmosis water desalination plant using
DEEP-3.2 software, J. Environ. Sci. Eng. A, 1 (2012) 318–328.
- E.M. Mokheimer, A.Z. Sahin, A. Al-Sharafi, A.I. Ali, Modeling
and optimization of hybrid wind–solar-powered reverse
osmosis water desalination system in Saudi Arabia, Energy
Convers. Manage., 75 (2013) 86–97.
- T. Ben M’Barek, K. Bourouni, K.B. Ben Mohamed, Optimization
coupling RO desalination unit to renewable energy by genetic
algorithms, Desal. Water Treat., 51 (2013) 1416–1428.
- A. Alsheghri, S.A. Sharief, S. Rabbani, N.Z. Aitzhan, Design and
cost analysis of a solar photovoltaic powered reverse osmosis
plant for Masdar Institute, Energy Procedia, 75 (2015) 319–324.
- I.J. Esfahani, C. Yoo, An optimization algorithm-based pinch
analysis and GA for an off-grid batteryless photovoltaicpowered
reverse osmosis desalination system, Renewable
Energy, 91 (2016) 233–248.
- M.A. Alghoul, P. Poovanaesvaran, M.H. Mohammed,
A.M. Fadhil, A.F. Muftah, M.M. Alkilani, K. Sopian, Design and
experimental performance of brackish water reverse osmosis
desalination unit powered by 2 kW photovoltaic system,
Renewable Energy, 93 (2016) 101–114.
- J. Shen, B.S. Richards, A.I. Schäfer, Renewable energy powered
membrane technology: case study of St. Dorcas borehole in
Tanzania demonstrating fluoride removal via nanofiltration/reverse osmosis, Sep. Purif. Technol., 170 (2016) 445–452.
- G. Zhang, B. Wu, A. Maleki, W. Zhang, Simulated annealingchaotic
search algorithm based optimization of reverse osmosis
hybrid desalination system driven by wind and solar energies,
Sol. Energy, 173 (2018) 964–975.
- O. Charrouf, A. Betka, S. Abdeddaim, A. Ghamri, Artificial
neural network power manager for hybrid PV-wind desalination
system, Math. Comput. Simul., 167 (2020) 443–460.
- G.D.P. da Silva, M.H. Sharqawy, Techno-economic analysis
of low impact solar brackish water desalination system in the
Brazilian Semiarid region, J. Cleaner Prod., 248 (2020) 119255,
doi:10.1016/j.jclepro.2019.119255.
- T.A. Ajiwiguna, G.-R. Lee, B.-J. Lim, S.-H. Cho, C.-D. Park,
Optimization of battery-less PV-RO system with seasonal water
storage tank, Desalination, 503 (2021) 114934, doi: 10.1016/j.desal.2021.114934.
- E. Rosales-Asensio, A.-E. Rosales, A. Colmenar-Santos,
Surrogate optimization of coupled energy sources in a
desalination microgrid based on solar PV and wind energy,
Desalination, 500 (2021) 114882, doi:10.1016/j.desal.2020.
114882.
- S. Saravanan, S. Thangavel, A simple power management
scheme with enhanced stability for a solar PV/wind/fuel cell/grid
fed hybrid power supply designed for industrial loads, J. Electr.
Comput. Eng., 2014 (2014) 319017, doi: 10.1155/2014/319017.
- K.L. Lian, J.H. Jhang, I.S. Tian, A maximum power point
tracking method based on perturb-and-observe combined with
particle swarm optimization, IEEE J. Photovoltaics, 4 (2014)
626–633.
- M.E. Ropp, S. Gonzalez, Development of a MATLAB/simulink
model of a single-phase grid-connected photovoltaic system,
IEEE Trans. Energy Convers., 24 (2009)195–202.
- D. Rekioua, E. Matagne, Optimization of Photovoltaic Power
Systems: Modelization, Simulation and Control, Green Energy
and Technology, Springer, 2012.
- V. Azbe, R. Mihalic, Distributed generation from renewable
sources in an isolated DC network, Renewable Energy, 31 (2006)
2370–2384.
- R. Burgos, D. Boroyevich, F. Wang, K. Karimi, G. Francis, On the
AC Stability of High Power Factor Three-Phase Rectifiers, Proc.
Energy Convers. Congr. Expo., 2010, pp. 2047–2054.
- G.N. Tiwari, S. Dubey, Fundamentals of Photovoltaic Modules
and Their Applications, RSC Publishing, 2010.
- M.A. Sharaf Eldean, A. El Shahat, A.M. Soliman, A new
modeling technique based on performance data for
photovoltaic modules and horizontal axis wind turbines, Wind
Eng., 42 (2018) 209–229.
- G. Amy, N. Ghaffour, Z. Li, L. Francis, R.V. Linares, T. Missimer,
S. Lattemann, Membrane-based seawater desalination: present
and future prospects, Desalination, 401 (2017) 16–21.
- A. Roy, S. Moulik, R. Kamesh, A. Mullick, Eds., Modeling in
Membranes and Membrane-based Processes, John Wiley &
Sons Publications, New Jersey, 2020.
- A.S. Nafey, M.A. Sharaf, L. García-Rodríguez, Thermoeconomic
analysis of a combined solar organic Rankine cyclereverse
osmosis desalination process with different energy
recovery configurations, Desalination, 261 (2010) 138–147.
- A.S. Nafey, M.A. Sharaf, Combined solar organic Rankine cycle
with reverse osmosis desalination process: energy, exergy, and
cost evaluations, Renewable Energy, 35 (2010) 2571–2580.
- A.M. Soliman, A. Mabrouk, M.A.S. Eldean, H.E. Fath,
Techno-economic analysis of the impact of working fluids
on the concentrated solar power combined with multi-effect
distillation (CSP-MED), Desal. Water Treat., 210 (2021) 1–21.
- D. Rani, S.K. Jain, D.K. Srivastava, M. Perumal, Genetic
algorithms and their applications to water resources systems,
Metaheuristics Water Geotech. Transp. Eng., 43 (2013),
doi: 10.1016/B978-0-12-398296-4.00003-9.