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Design recommendations for humidification-dehumidification solar water desalination systems

机译:加湿除湿太阳能水海水淡化系统的设计建议

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The productivity of the humidification-dehumidification solar desalination systems (HDHSDS) significantly increases when the temperature of the feed water increases, so, high temperature solar water collectors as parabolic trough or evacuated tube collectors are recommended for these systems. On the other hand, the effect of air temperature on the productivity of the HDHSDS is insignificant. Thus, the utilization of solar air heater is not recommended in these systems. Based on these recommendations;;three research points are suggested for future work: 1) using the recovered PV thermal energy for heating the feed water in the HDHSDS. This will provide an annual fresh water productivity more than 833 L/m2 of PV in addition to 278 kWh of electricity;;2) using phase change material with melting temperature around 90 °C as a thermal energy storage medium to provide feed water with high and almost constant temperature during the day and keeps the system in operation 24 h/day;;3) using the thermal energy rejected from the thermal power cycles for water heating in the HDHSDS.
机译:加湿除湿太阳脱水系统(HDHSD)的生产率在进料水的温度增加时显着增加,因此,对于这些系统,建议使用高温太阳能吸收器作为抛物面槽或抽空管收集器。另一方面,空气温度对HDHSDS的生产率的影响是微不足道的。因此,在这些系统中不建议使用太阳能加热器的利用。基于这些建议;;建议未来工作的三个研究点:1)利用回收的光伏热能,用于在HDHSDS中加热进料水。这将在278千瓦时提供超过833升/平方米的PV的年淡水生产率;; 2)使用相变材料,熔化温度约为90°C,为热能储存介质,以提供高温白天几乎恒定的温度,并在24小时/天的操作中保持系统; 3)使用从热电循环中拒绝的热能进行HDHSD的水加热。

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