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Experimental Analysis of Solar Driven Bubble Column Humidifier for Humidification-Dehumidification (HDH) Water Desalination System

机译:太阳能驱动气泡塔加湿器用于加湿除湿(HDH)海水淡化系统的实验分析

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Humidification-dehumidification (HDH) is a carrier gas based thermal technique, which is ideal as a small scale decentralized water desalination system. An innovative design approach is to use the bubble column humidifier to enhance the performance of the HDH water desalination system. Therefore, a novel bubble column humidifier is proposed which is operated through solar thermal energy as the main source of energy input. The overall objective of this work is to develop and test the novel bubble column humidifier to identify the optimum performance operating conditions for its possible integration with a dehumidifier. The design of the bubble column humidifier is optimized in terms of perforated plate geometric features to reduce the overall pressure drop in the system. The study addresses the relation between the air pressure variation with water column height and air superficial velocity varies. The proposed bubble column humidifier is integrated with Fresnel lens to increase the water temperature as it enters the humidifier. The influence of water temperature on the vapor density is investigated at different air superficial velocities. Results indicate that the vapor density in the bubble column humidifier is significantly increased with the increase in the water temperature and air superficial velocity. One major advantages of this proposed humidifier is its ability to have a direct solar thermal heating. Subsequently, it can be located in remote areas.
机译:加湿除湿(HDH)是一种基于载气的热力技术,非常适合作为小型分散式海水淡化系统。一种创新的设计方法是使用鼓泡塔加湿器来增强HDH海水淡化系统的性能。因此,提出了一种新颖的鼓泡塔加湿器,其通过太阳能作为输入能量的主要来源来运行。这项工作的总体目标是开发和测试新型鼓泡塔加湿器,以确定与除湿器集成的最佳性能操作条件。气泡塔加湿器的设计在多孔板几何特征方面进行了优化,以减少系统中的总压降。该研究解决了气压变化与水柱高度和空气表面速度变化之间的关系。拟议中的气泡塔加湿器与菲涅耳透镜集成在一起,可在进入加湿器时提高水温。在不同的空气表观速度下,研究了水温对蒸汽密度的影响。结果表明,气泡塔加湿器中的蒸汽密度随着水温和空气表观速度的增加而显着增加。提出的这种加湿器的主要优点之一是具有直接太阳热能的能力。随后,它可以位于偏远地区。

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