References
- M. Shatat, S.B. Riffat, Water desalination technologies
utilizing conventional and renewable energy sources, Int. J.
Low-Carbon Technol., 9 (2014) 1–19.
- F. Salata, M. Coppi, A first approach study on the desalination
of sea water using heat transformers powered by solar ponds,
Appl. Energy, 136 (2014) 611–618.
- M.W. Shahzad, M. Burhan, N. Ghaffour, K.C. Ng, A multi
evaporator desalination system operated with thermocline
energy for future sustainability, Desalination, 435 (2018)
268–277.
- M.W. Shahzad, K.C. Ng, An improved multievaporator
adsorption desalination cycle for gulf cooperation council
countries, Energy Technol., 5 (2017) 1663–1669.
- M.W. Shahzad, K.C. Ng, On the road to water sustainability in
the Gulf, Nat. Middle East, 50 (2016), doi: 10.1038/nmiddleeast
.2016.50.
- Y.-D. Kim, K. Thu, A. Myat, K.C. Ng, Numerical simulation
of solar-assisted multi-effect distillation (SMED) desalination
systems, Desal. Water Treat., 51 (2013) 1242–1253.
- H.T. Wang, B.A. Li, B. Liu, Status of seawater desalination
technology and presents of novel technology, Sal. Chem. Ind.,
6 (2014) 1–5.
- M.W. Shahzad, M. Burhan, K.C. Ng, A standard primary energy
approach for comparing desalination processes, NPJ Clean
Water, 1 (2019) 1–7.
- K.C. Ng, M.W. Shahzad, H.S. Son, O.A. Hamed, An
exergy approach to efficiency evaluation of desalination,
Appl. Phys. Lett., 110 (2017) 1841011–1841015, https://doi.org/10.1063/1.4982628.
- M.W. Shahzad, K.C. Ng, K. Thu, Future sustainable desalination
using waste heat: kudos to thermodynamic synergy,
Environ. Sci. Water Res. Technol., 2 (2016) 206–212.
- A.D. Khawaji, I.K. Kutubkhanah, J.-M. Wie, Advances in
seawater desalination technologies, Desalination, 221 (2008)
47–69.
- M.A. Darwish, Desalination Process: A Technical Comparison,
Proceedings of IDA World Congress on Desalination and
Water Sciences, Abu Dhabi, United Arab Emirates, 1995,
pp. 149–173.
- A. Ophir, A. Gendel, G. Kronenberg, The LT-MED process
for SW Cogen plants, Desal. Water Reuse., 4 (1994) 28–31.
- M.W. Shahzad, K. Thu, K.C. Ng, W.G. Chun, Recent
development in thermally activated desalination methods:
achieving an energy efficiency less than 2.5 kWhelec/m3, Desal.
Water Treat., 57 (2016) 7396–7405.
- M.W. Shahzad, K.C. Ng, K. Thu, B.B. Saha, W.G. Chun, Multi
effect desalination and adsorption desalination (MEDAD):
a hybrid desalination method, Appl. Therm. Eng., 2 (2014)
289–297.
- K.C. Ng, K. Thu, S.J. Oh, L. Ang, M.W. Shahzad,
A.B. Ismail, Recent developments in thermally-driven seawater
desalination: energy efficiency improvement by hybridization
of the MED and AD cycles, Desalination, 356 (2015) 255–270.
- C.J. Gao, G.L. Ruan, Seawater Desalination Technology and
Engineering, Chemical Industry Publications, Beijing, 2016
(in Chinese).
- F.N. Alasfour, M.A. Darwish, A.O. Bin Amer, Thermal analysis
of ME—TVC+MEE desalination systems, Desalination,
174 (2005) 39–61.
- C.L. Li, X.Y. He, Study on Model-Free Adaptive Control in
Multiple-Effect Evaporator Method, J. Hunan Univ. Technol.,
5 (2008) 74–76.
- M.W. Shahzad, M. Burhan, K.C. Ng, Pushing desalination
recovery to the maximum limit: membrane and thermal
processes integration, Desalination, 416 (2017) 54–64.
- T.M. Missimer, K.C. Ng, K. Thuw, M.W. Shahzad, Geothermal
electricity generation and desalination: an integrated process
design to conserve latent heat with operational improvements,
Desal. Water Treat., 57 (2016) 23110–23118.
- S.W. Sung, J.T. Lee, I.-B. Lee, Process Identification and PID
Control, Wiley-IEEE Press, 2009.
- M.W. Shahzad, K. Thu, Y.-D. Kim, K.C. Ng, An experimental
investigation on MEDAD hybrid desalination cycle, Appl.
Energy, 148 (2015) 273–281.
- A.M. El-Nashar, A. Qamhiyeh, Simulation of the performance
of MES evaporators under unsteady state operating conditions,
Desalination, 79 (1990) 65–83.
- A. de la Calle, J. Bonilla, L. Roca, P. Palenzuela, Dynamic
modeling and simulation of a solar-assisted multi-effect
distillation plant, Desalination, 357 (2015) 65–76.
- N.H. Aly, M.A. Marwan, Dynamic response of multi-effect
evaporators, Desalination, 114 (1997) 189–196.
- M.T. Mazini, A. Yazdizadeh, M.H. Ramezani, Dynamic
modeling of multi-effect desalination with thermal vapor
compressor plant, Desalination, 353 (2014) 98–108.
- M.W. Shahzad, K.C. Ng, K. Thu, B.B. Saha, W.G. Chun, Multieffect
desalination and adsorption desalination (MEDAD):
a hybrid desalination method, Appl. Therm. Eng., 72 (2014)
289–297.
- S. Azimibavil, A.J. Dehkordi, Dynamic simulation of a multieffect
distillation (MED) process, Desalination, 392 (2016)
91–101.
- Z.H. Ge, X.Z. Du, L.J. Yang, Y.P. Yang, S.R. Wu, Simulation on
the start-up of MED seawater desalination system coupled with
nuclear heating reactor, Appl. Therm. Eng., 28 (2008) 203–210.
- L. Roca, L.J. Yebra, M. Berenguel, D.C. Alarcón-Padilla,
Modeling of a solar seawater desalination plant for automatic
operation purposes, Sol. Energy Eng., 130 (2008) 1–8, https://
doi.org/10.1115/1.2969807.
- H. Chaudhary, V. Panwar, N. Sukavanum, R. Prasad, Fuzzy
PD+I based hybrid force/position control of an Industrial Robot
Manipulator, IFAC Proc. Volumes, 47 (2014) 429–436.
- M.X. Lu, A. Luo, Chemical Process Control System, Chemical
Industry Publications, Beijing, 2006 (in Chinese).
- J. Carvajal, G.R. Chen, H. Ogmen, Fuzzy PID Controller: Design,
Performance Evaluation, and Stability Analysis, Information
Sciences, 2000.
- J.R. Couper, W.R. Penney, J.R. Fair, Chemical Process
Equipment-Selection and Design, Elsevier, Amsterdam, 2004.
- M.W. Shahzad, A. Myat, W.G. Chun, K.C. Ng, Bubble-assisted
film evaporation correlation for saline water at sub-atmospheric
pressures in horizontal-tube evaporator, Appl. Therm. Eng.,
50 (2013) 670–676.
- S.C. Wang, Desalination Engineering, Chemical Industry
Publications, Beijing, 2006, pp. 39–46 (in Chinese).
- D.R. Wu, Chemical Process Design Handbook, Chemical
Industry Publications, Beijing, 2009, (in Chinese).
- H.T. El-Dessouky, H.M. Ettouney, Fundamentals of Salt Water
Desalination, Elsevier, Amsterdam, 2002.