Humidification Dehumidification Solar Desalination System

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

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Mathematics 2021, 9, 33 23 of 31 September 15 23.7 20.8 15.9 9.1 45 45 4.1 Table 2. Parameters for the calculation of water productivity. January 17 February 16 March 16 April 15 May 15 June 11 September 15 October November Dec1em4ber 10 December 10 11.1 12.3 18.7 26.8 28.5 28.8 32.4 26.7 23.7 20.8 15.9 Mathematics 2020, 8, x FOR PEER REVIEW August 16 23 of 33 Month Representative Day [84] Temperature (◦C) RH (%) 84 85 84 56 22 77 81 Wind Velocity (m/s) 3.5 2.2 4.7 10.0 9.4 4.6 July 17 2.7 October 15 4.1 15 39 9.1 100 2.4 November 14 100 1.0 811.0 1.5 3.2 39 2.4 1.5 82 81 Figure 11. Distribution of total, beam/direct, and diffused solar radiation. Figure 11. Distribution of total, beam/direct, and diffused solar radiation. Figure 12 shows the yearly freshwater productivity from the solar-assisted desalination HDH Figure 12 shows the yearly freshwater productivity from the solar-assisted desalination plant with and without waste heat recovery from the condensing coil. The lower freshwater HDH plant with and without waste heat recovery from the condensing coil. The lower production rate is observed for April and May. Although a significant amount of solar radiation is freshwater production rate is observed for April and May. Although a significant amount of experienced in these msoolanrthrasd(Fiaitgiuonreis11e)xpbeurtiethnecerdeginiotnhoesfeTmaxoinlath(3s3(.F7i4g5u8r3e31,17)2b.7u8t7t5h)eerxepgeiornieonfceTsaxhiilgah(33.745833, wind velocities in the7se2.m78o7n5t)hesx. Tphereirenfoceres,hitiginhcrweainsedsvtheeloocviteireasllinhetahtetsreanmsfoenrtchose.ffTichienretfofrteh,eitsoinlacreases the overall heat transfer coefficient of the solar collector, which yields lower water production collector, which yields lower water production rates. The highest freshwater production rate is rates. The highest freshwater production rate is observed for July where the incident observed for July where the incident radiation is maximum, and the wind velocities are low. The radiation is maximum, and the wind velocities are low. The water production rate in water production rate in November, December, January, and February are relatively high. Even November, December, January, and February are relatively high. Even though low ambient though low ambient temperatures are observed in these months, but relatively higher values of temperatures are observed in these months, but relatively higher values of incident radiation incident radiation and lower wind velocities are observed; therefore, the water production rate is also and lower wind velocities are observed; therefore, the water production rate is also relatively relatively high. The water production rate in August is low because Taxila experiences very high humidity this month; therefore, it decreases the potential of the humidification process in the desalination unit. One important phenomenon can be observed from Figure 12 that the water production is high for each month of the year if the waste heat from the condensing coil is recovered. It is reported here that the freshwater productivity is increased by ~16% for June by recovering the

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