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Combined probation of bubble column humidification dehumidification desalination system using solar collectors

机译:利用太阳能集热器的鼓泡塔加湿除湿淡化系统联合试用

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摘要

A bubble column (BC) humidification dehumidification (HDH) desalination system integrated with the different solar collectors is analyzed and reported in this work. Major components of the systems are a humidifier, dehumidifier, solar air heater (SAH), and dual purpose collector (DPC). Three set of experiments is performed by integrating the HDH system with conventional solar air heater (case I), by integrating with solar air heater containing turbulators (case II), and by integrating with dual purpose solar collector containing turbulators (case III). Turbulators in the air flow field of solar collector enhances the exit air temperature. The air and water are simultaneously heated up in the dual purpose collector and supplied to the humidifier. All the experiments are done by varying the mass flow rate of air (0.014 kg/s to 0.018 kg/s) and cooling water (0.025-0.058 kg/s). The performance of the system is improved with the increase in air and cooling water flow rate. Gained output ratios of about 2, 2.8, 3.3 and productivities of around 1632, 20.61, 23.92 kg/m(2)day are observed in the case I, case II and case III respectively. The minimum distilled water cost of 0.019 $/kg is achieved with the case III configuration. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中分析并报告了与不同太阳能收集器集成在一起的鼓泡塔(BC)加湿除湿(HDH)脱盐系统。系统的主要组件是加湿器,除湿器,太阳能空气加热器(SAH)和两用集热器(DPC)。通过将HDH系统与常规太阳能空气加热器(案例I)集成,与包含湍流器的太阳能空气加热器集成(案例II)并与包含湍流器的双用途太阳能集热器(案例III)集成,进行了三组实验。太阳能收集器的空气流场中的湍流器提高了出风温度。空气和水在两用集热器中同时被加热并提供给加湿器。通过改变空气(0.014 kg / s至0.018 kg / s)和冷却水(0.025-0.058 kg / s)的质量流率来完成所有实验。随着空气和冷却水流速的增加,系统的性能得到改善。在案例I,案例II和案例III中,分别获得了约2、2.8、3.3的产出比和约1632、20.61、23.92 kg / m(2)·天的生产率。使用案例III配置时,最低蒸馏水成本为0.019 $ / kg。 (C)2016 Elsevier Ltd.保留所有权利。

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