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Performance of a greenhouse deslaination condenser: An experimental study

机译:温室脱层冷凝器的性能:一项实验研究

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Irrigation water for onshore greenhouses may be produced using seawater in a humidification-dehumidification process. That is, greenhouse air may be humidified, and thus evaporatively cooled, using seawater sprayed at an evaporator placed at one side of the greenhouse and subsequently dehumidified by a condenser placed at the opposite side. Simple and inexpensive condenser designs are crucial for economical viability of greenhouse desalination. Innovative condenser design was created in this study consisting of a cooled plate surface upon which water vapor, carried by saturated air, condenses at its outer surface. The plates are made of plastic and are constantly cooled by coolant flowing through internal passages within the plate. Experimental tests were done to investigate condensate production rate per unit area. These results were then compared to conventional vertical fin-tube bank condenser designs used by other investigators. The comparison showed that a higher rate of condensate production (an increase of 16.4%) is achieved using the simpler and less expensive condenser developed in this work.
机译:用于陆上温室的灌溉水可以在加湿-除湿过程中使用海水来生产。即,可以使用在温室的一侧放置的蒸发器上喷洒的海水使温室空气加湿,从而蒸发冷却,然后通过位于相反侧的冷凝器除湿。简单而廉价的冷凝器设计对于温室脱盐的经济可行性至关重要。在这项研究中创建了创新的冷凝器设计,该设计包括冷却的板表面,饱和空气携带的水蒸气在该板的外表面冷凝。板由塑料制成,并通过流过板内部通道的冷却剂不断冷却。进行了实验测试以调查每单位面积的冷凝水生产率。然后将这些结果与其他研究人员使用的常规垂直翅片管束冷凝器设计进行比较。比较结果表明,使用这项工作开发的更简单,更便宜的冷凝器可以实现更高的冷凝水生产率(增加16.4%)。

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