首页> 外文会议>ASME international conference on energy sustainability >EXPERIMENTAL ANALYSIS OF SOLAR DRIVEN MULTI-STAGE STEPPED BUBBLER HUMIDIFIER FOR HUMIDIFICATION-DEHUMIDIFICATION (HDH) WATER DESALINATION SYSTEM
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EXPERIMENTAL ANALYSIS OF SOLAR DRIVEN MULTI-STAGE STEPPED BUBBLER HUMIDIFIER FOR HUMIDIFICATION-DEHUMIDIFICATION (HDH) WATER DESALINATION SYSTEM

机译:太阳能驱动多阶段步进泡加湿器加湿除湿(HDH)水海水淡化系统的实验分析

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The fresh water is the essence of life and its scarcity is the most threatening concern for mankind. To alleviate the worries of the existing and approaching fresh water crisis, the answer for water sustainability may lie in developing the decentralized small-scale water desalination system. Solar humidification-dehumidification (HDH) is a carrier gas based thermal technique that is ideal for 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 multi-stage stepped bubble column humidifier is proposed that is operated through solar thermal energy as the main source of energy input. The study addresses the relation between the pressure drop variations with varying water column height at different air superficial velocities. Findings revealed that the water column height and air superficial velocity should be optimized according to the geometric features of the perforated plate in order to achieve a higher humidifier performance with a lower pressure drop. The day round performance of the humidifier is investigated in single stage, two stage, and three stage configurations. Findings show that the average day round absolute humidity at the exit of the humidifier is increased by 9 % in two-stage and 23 % in three-stage configurations compared to the single stage humidifier. 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:淡水是生活的本质,它的稀缺性是人类最威胁的担忧。为了缓解现有和接近淡水危机的担忧,水可持续性的答案可能撒谎在开发分散的小型水海水淡化系统方面。太阳加湿除湿(HDH)是一种基于载气的热技术,适用于小型分散水脱盐系统。一种创新的设计方法是使用气泡柱加湿器来增强HDH水脱盐系统的性能。因此,提出了一种新的多级步进泡柱加湿器,其通过太阳能热能作为能量输入的主要来源来操作。该研究解决了不同空气浅表速度的不同水柱高的压降变化之间的关系。结果表明,水柱高度和空气浅表速度应根据穿孔板的几何特征进行优化,以实现具有较低压降的更高的加湿器性能。加湿器的日圆形性能在单一阶段,两个阶段和三个阶段配置中进行了研究。调查结果表明,与单级加湿器相比,加湿器出口处的平均圆形绝对湿度在两阶段和23%的三级配置中增加了9%。该提出的加湿器的一个主要优点是其具有直接太阳能热加热的能力。随后,它可以位于偏远地区。

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