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Mathematics 2021, 9, 33 28 of 31 References Qu R Rasp−g S T U u,v Ms Wj WER y, z Subscript a s v w d Symbols α αsp β (τα) ε εsp φs Rs μw Γ δs δs λ ρ θe ω ωs Superscript s h Useful heat gain, W General Gas Constant, J/mol. K Rayleigh number Absorbed Solar Radiation, W/m2 Temperature, K Heat Transfer Coefficient, W/m2. K Velocity, m/s Spacing between the collector tubes, m Water Evaporation Rate, kg/m2 Waste Heat Recovery Coordinate system, m Air Saturated Vapor Water Diffused Radiation Thermal Diffusivity, m2/s Thermal absorptivity of absorber plate of the solar collector Title Angle, degree Transmittance-absorptance product Knudson Coefficient of Evaporation Emissivity of absorber plate Latitude angle Reflectance of a single cover Dynamic viscosity of water, kg/m.s Mass flow rate of saline water per unit width of the wall, kg/s/m Earth’s declination angle Falling Film Water Thickness, m Latent Heat of Water, kJ/kg Density, kg/m3 Angle of Incidence, Degree Absolute Humidity of Air, kg/kg Hour Angle Related to Solar Collector Related to Humidifier 1. Sharshir, S.W.; Peng, G.; Yang, N.; El-Samadony, M.O.A.; Kabeel, A.E. A continuous desalination system using humidification– Dehumidification and a solar still with an evacuated solar water heater. Appl. Therm. Eng. 2016, 104, 734–742. [CrossRef] 2. Zhang, L.Z.; Li, G.P. Energy and economic analysis of a hollow fiber membrane-based desalination system driven by solar energy. Desalination 2017, 404, 200–214. [CrossRef] 3. Predescu, A.; Truică, C.-O.; Apostol, E.-S.; Mocanu, M.; Lupu, C. An Advanced Learning-Based Multiple Model Control Supervisor for Pumping Stations in a Smart Water Distribution System. Mathematics 2020, 8, 887. [CrossRef] 4. Manju, S.; Sagar, N. Renewable energy integrated desalination: A sustainable solution to overcome future fresh-water scarcity in India. Renew. Sustain. Energy Rev. 2017, 73, 594–609. [CrossRef] 5. Chandrashekara, C.; Yadav, A. Water desalination system using solar heat: A review. Renew. Sustain. Energy Rev. 2017, 67, 1308–1330. 6. Kaya, A.; Tok, M.; Koc, M. A Levelized Cost Analysis for Solar-Energy-Powered Sea Water Desalination in The Emirate of Abu Dhabi. Sustainability 2019, 11, 1691. [CrossRef] 7. Abdelkareem, M.A.; Assad, M.E.H.; Sayed, E.T.; Soudan, B. Recent progress in the use of renewable energy sources to power water desalination plants. Desalination 2018, 435, 97–113. [CrossRef] 8. Rabbani, M.; Ratlamwala, T.A.H.; Dincer, I. Transient energy and exergy analyses of a solar based integrated system. J. Sol. Energy Eng. Trans. ASME 2014, 137, 011010. [CrossRef] 9. Reif, J.H.; Alhalabi, W. Solar-thermal powered desalination: Its significant challenges and potential. Renew. Sustain. Energy Rev. 2015, 48, 152–165. [CrossRef]PDF Image | Humidification Dehumidification Solar Desalination System
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