References
- D. Brogioli, F. La Manti, N.Y. Yip, Thermodynamic analysis
and energy efficiency of thermal desalination processes,
Desalination, 428 (2018) 29–39.
- C.H. Woo, Research trend of membranes for water treatment
by analysis of patents and papers’ publications, Desal. Water.
Treat., 10 (2018) 201–220.
- H.S. Kim, H.C. No, Thermal coupling of HTGRs and MED
desalination plants, and its performance and cost analysis for
nuclear desalination, Desalination, 303 (2012) 17–22.
- Y.H. Jung, Y.H. Jeong, J. Choi, A.F.Wibisono, J.I. Lee, H.C.
No, Feasibility study of a small-sized nuclear heat-only plant
dedicated to desalination in the UAE, Desalination, 336 (2014)
83–97.
- M.Y. Park, E.S. Kim, Thermodynamic evaluation on the
integrated system of VHTR and forward osmosis desalination
process, Desalination, 337 (2014) 117–126.
- International Atomic Energy Agency, TECDOC-1561-
Economics of Nuclear Desalination: New Developments and
Site Specific Studies, Printed by the IAEA, Austria, 2007.
- S. Zhou, Y. Guo, X. Mu, S. Shen, Effect of design parameters on
thermodynamic losses of the heat transfer process in LT-MEE
desalination plant, Desalination, 375 (2015) 40–47.
- Y. Bouaichaoui, A. Belkaid, S.A. Amzert, Economic and safety
aspects in nuclear seawater desalination, Procedia. Eng., 33
(2012) 146–154.
- M.G. Abdoelatef, R.M. Field, Y.-K. Lee, Thermodynamic
evaluation of coupling APR1400 with a thermal desalination
plant, Int. J. Chem. Molec. Nucl. Mater. Metal. Eng., 9 (2015)
1070–1078.
- A.K. Adak, P.K. Tewari, Technical feasibility study for coupling
a desalination plant to an advanced heavy water reactor,
Desalination, 337 (2014) 76–82.
- International Atomic Energy Agency, TECDOC 1524 - Status of
Nuclear Desalination in IAEA Member States, Printed by the
IAEA, Austria, 2007.
- 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.
- S.U.-D. Khan, S. Haider, A. El-Leathy, U.A. Rana, S.N. Danish,
R. Ullah, Development and techno-economic analysis of small
modular nuclear reactor and desalination system across Middle
East and North Africa region, Desalination, 406 (2017) 51–59.
- A. Ahmad, M.V. Ramana, Too costly to matter: economics of
nuclear power for Saudi Arabia, Energy, 69 (2014) 682–694.
- A Rezaei, A Naserbeagi, G Alahyarizadeh, M Aghaie, Economic
evaluation of Qeshm island MED-desalination plant coupling
with different energy sources including fossils and nuclear
power plants, Desalination, 422 (2017) 101–112.
- International Atomic Energy Agency, TECDOC-1056-Nuclear
heat applications: design aspects and operating experience,
Printed by the IAEA, Austria, 1998.
- International Atomic Energy Agency, Hydrogen as an energy
carrier and its production by nuclear power, Printed by the
IAEA, Austria, 1999.
- K. Ansari, H. Sayyaadi, M. Amidpour, Thermoeconomic
optimization of a hybrid pressurized water reactor (PWR)
power plant coupled to a multi effect distillation desalination
system with thermo-vapor compressor (MED-TVC), Energy, 35
(2010) 1981–1996.
- International Atomic Energy Agency (IAEA), TECDOC-666-Technical and economic evaluation of potable water production
through desalination of seawater by using nuclear energy and
other means, Printed by the IAEA, Austria, 1992.
- International Atomic Energy Agency (IAEA), TECDOC-1186-Examining the economics of seawater desalination using the
DEEP code, Printed by the IAEA, Austria, 2000.
- International Atomic Energy Agency (IAEA), TECDOC-1235-Safety aspects of nuclear plants coupled with seawater
desalination units, Printed by the IAEA, Austria, 2001.
- International Atomic Energy Agency (IAEA), TECDOC-940-Floating nuclear energy plants for seawater desalination,
Printed by the IAEA, Austria, 1997.
- International Atomic Energy Agency (IAEA), TECHNICAL
REPORTS SERIES No. 400-introduction of nuclear desalination,
Printed by the IAEA, Austria, 2000.
- International Atomic Energy Agency (IAEA), TECDOC-1444-Optimization of the coupling of nuclear reactors and
desalination systems, Printed by the IAEA, Austria, 2005.
- International Atomic Energy Agency (IAEA), TECDOC-1584-Advanced Applications of Water Cooled Nuclear Power Plants,
Printed by the IAEA, Austria, 2008.
- I.G. Sánchez-Cervera, K.C. Kavvadias, I. Khamis, DE-TOP: a
new IAEA tool for the thermodynamic evaluation of nuclear
desalination, Desalination, 321 (2013) 103–109.
- F. Hafdhi, T. Khir, A. Ben Yahia, A. Ben Brahim, Exergoeconomic
optimization of a double effect desalination unit used in an
industrial steam power plant, Desalination, 438 (2018) 63–82.
- A. Hosseini, A. Banakar, S. Gorjian, Development and
performance evaluation of an active solar distillation system
integrated with a vacuum-type heat exchanger, Desalination,
435 (2018) 45–59.
- T. Ming, T. Gong, R.K. de Richter, C. Cai, S.A. Sherif, Numerical
analysis of seawater desalination based on a solar chimney
power plant, Appl. Energy., 208 (2017) 1258–1273.
- G. Alonso, S. Vargas, E. del Valle, R. Ramirez, Alternatives of
seawater desalination using nuclear power, Nucl. Eng. Design.,
245 (2012) 39–48.
- S. Dincer, I. Dincer, Comparative evaluation of possible
desalination options with various nuclear power plants, Exerg.
Energ. Environ. Dimen., (2018) 569–582.
- N.Y. Mansouri, A.F. Ghoniem, Does nuclear desalination make
sense for Saudi Arabia, Desalination, 406 (2017) 37–43.
- W. Li, Y. Zhang, W. Zheng, Investigation on three seawater
desalination processes coupled with NHR-200, Desalination,
298 (2012) 93–98.
- International Atomic Energy Agency, DE-TOP User’s Manual
Version 2.0 Beta, 2014.
- A.M. Elaskary, System simulation for coupling nuclear power
plants and desalination in different scenarios, Int. J. Scient. Eng.
Res., 4 (2013) 1116.
- International Atomic Energy Agency (IAEA), TECDOC-942-Thermodynamic and economic evaluation of co-production
plants for electricity and potable water, Printed by the IAEA,
Austria, 1997.
- A Naserbegi, M Aghaie, A Minuchehr, G Alahyarizadeh, A
novel exergy optimization of Bushehr nuclear power plant
by gravitational search algorithm (GSA), Energy, 148 (2018)
373–385.
- R. Terzi, I. Tukenmez, E. Kurt, Energy and exergy analyses of a
VVER type nuclear power plant, Int. J. Hydrogen. Energy., 41
(2016) 12465–12476.
- H. Sayyaadi, T. Sabzaligol, Exergoeconomic optimization of a
1000 MW light water reactor power generation system, Int. J.
Energy. Res., 33 (2009) 378–395.