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An experimental investigation on a portable bubble basin humidification/dehumidification desalination unit utilizing a closed-loop pulsating heat pipe

机译:采用闭环脉动热管的便携式气泡盆地加湿/除湿脱水装置的实验研究

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摘要

The present work aims to enhance the performance of a solar energy-driven HDH desalination system. An experimental apparatus consisting of a novel closed-loop pulsating heat pipe (CLPHP) assisted by a bubble basin HDH system was investigated. To evaluate the productivity of the fresh water, tests have been properly designed and conducted in outdoor and indoor modes during June and July of 2020, under local weather conditions of Mashhad, Iran. A closed air-heated configuration is introduced into the HDH desalination system, to recover the condensation latent heat. The air leaving the dehumidifier is pre-heated and pre-humidified using CLPHP before entering the humidifier of the desalination unit. Also, an air injection system is used to enhance the mass and heat transfer rate by generating bubbles. In the experiments, the influence of the operating conditions such as radiation and air mass flow rate on the performance of the desalination unit was investigated. Furthermore, a comparison between the bubble basin and bubble column types was carried out. Based on the results, the bubble basin type presented a higher yield compared to the bubble column type that was obtained as 0.83 and 0.70 (kg/(hr.m(2))), respectively. Besides, it was observed that by increasing the radiation and air mass flow rate, productivity is improved. The maximum obtained yield of the proposed system was achieved as 8.7 L/(day.m(2)).
机译:目前的作品旨在增强太阳能驱动的HDH海水淡化系统的性能。研究了由助泡盆地HDH系统辅助的新型闭环脉动热管(CLPHP)组成的实验装置。为了评估淡水的生产率,在2020年6月和7月的户外和室内模式下,在Mashhad,Mashhad,Iran的当地天气条件下,测试已经在室外和室内模式下进行了正确设计和进行。将封闭的空气加热配置引入HDH脱盐系统中,以回收冷凝潜热。在进入海水淡化单元的加湿器之前,使用CLPH预热和预加热除湿器的空气。而且,空气喷射系统用于通过产生气泡来提高质量和传热速率。在实验中,研究了诸如辐射和空气质量流量的操作条件对脱盐单元的性能的影响。此外,进行泡盆腔和泡柱类型之间的比较。基于该结果,与获得为0.83和0.70(kg /(hr.m(2)))的气泡塔类型相比,气泡盆型呈较高的产率。此外,观察到通过增加辐射和空气质量流速,提高了生产率。所得制备系统的最大收率达到8.7升/(日外(2))。

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