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Humidification Dehumidification Solar Desalination System

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Humidification Dehumidification Solar Desalination System ( humidification-dehumidification-solar-desalination-system )

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Mathematics 2020, 8, x FOR PEER REVIEW Mathematics 2020, 8, x FOR PEER REVIEW 21 of 33 Mathematics 2021, 9, 33 of ~15% in water productivity is reported by waste heat recovery from the condensing coil for a saline of ~15% in water productivity is reported by waste heat recovery from the condensing coil for a saline 21 of 33 21 of 31 water MFR of 1800 kg/h at a water film temperature of 85 °C. water MFR of 1800 kg/h at a water film temperature of 85 °C. Figure 8. Effect of MFR of saline water on water production with and without waste heat recovery. Figure 8. Effect of MFR of saline water on water production with and without waste heat recovery. Figure 8. Effect of MFR of saline water on water production with and without waste heat recovery. 5.3.MassFlow5.R3.atMe(aMssFRlo)wofRFaeteed(wMatFeRr)EoffeFcteeodnwFartesrhEwffaetcetroPnroFdrueschtiwvaityerProductivity 5.3. Mass Flow Rate (MFR) of Feedwater Effect on Freshwater Productivity The MFR of cooling water in the condensing coil is changed from 1200 kg/h to The MFR of cooling water in the condensing coil is changed from 1200 kg/h to 4000 kg/h and its The MFR of cooling water in the condensing coil is changed from 1200 kg/h to 4000 kg/h and its 4000 kg/h and its influence on freshwater productivity is studied. The simulation was car- influence on freshwater productivity is studied. The simulation was carried out on three different influence on freshwater productivity is studied. The simulation was carried out on three different ried out on three different values (1, 2, and 4) of NTU of the condensing coil. The influence values (1, 2, and 4) of NTU of the condensing coil. The influence of waste heat recovery is also values (1, 2, and 4) of NTU of the condensing coil. The influence of waste heat recovery is also presented here. presented here. of waste heat recovery is also presented here. It can be witnessed in Figure 9 that the hourly freshwater production is directly pro- It can be witnessed in Figure 9 that the hourly freshwater production is directly proportional to It can be witnessed in Figure 9 that the hourly freshwater production is directly proportional to portional to the MFR of the cooling water because its increment decreases the surface the MFR of the cooling water because its increment decreases the surface temperature of the the MFR of thetecmoopleinragtuwreatoefrthbecaounsdeenitsserinwchreicmhecnatndinecreasescothnedesnusraftaicoenrteamte.pFeruartuhreermoofrteh,ewater condenser which can increase condensation rate. Furthermore, water productivity is increasing with condenser whichpcroanduincctirveiatsyeiscoincdrenasaintigonwriathtet.hFeuirnthcerermasoerien, wthaeteNrTpUroodfutchteivcitoynidseinscirnegascionigl.wAithigher the increase in the NTU of the condensing coil. A higher value of NTU corresponds to a higher value value of NTU corresponds to a higher value of the overall heat transfer coefficient in the the increase in the NTU of the condensing coil. A higher value of NTU corresponds to a higher value of the overall heat transfer coefficient in the condensing coil. Therefore, it increases the actual heat condensing coil. Therefore, it increases the actual heat transfer; and as a result, the hourly of the overall heat transfer coefficient in the condensing coil. Therefore, it increases the actual heat transfer; and afrseashrwesautletr, tphreohdouuctriloynfriessihnwcraetaesrepdr.oFduurtchtieornmiosrien,chreareseidt i.sFsuhrothwenrmthoartet,herheoiutrilsyshporowdnuc- transfer; and as a result, the hourly freshwater production is increased. Furthermore, here it is shown thatthehourtlyiopnrroadteucotfiofrnesrhatweaotferfriessihnwcraetaesreidsitnoc1r0e%asebdytwoa1s0t%ehbeyatwraesctoevhereeadtrferocomvethredcofrnodmentshieng that the hourly production rate of freshwater is increased to 10% by waste heat recovered from the condensing cocoililaattaannMFFRRooffccooolilninggwwaateterrooff440000kkgg/h/.h. condensing coil at an MFR of cooling water of 4000 kg/h. Figure 9.FEigffuercet o9f. MEFffRecotfocfoMoliFnRg owfactoeroloingfrwesahtewraotenr fprreosdhwucattiverityprwodituhcatinvditywwithitohutanwdaswteitheoautt waste Figure 9. Effect of MFR of cooling water on freshwater productivity with and without waste heat recovery.heat recovery. recovery.

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