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Exergy analysis of a high-temperature-steam-driven, varied-pressure, humidification-dehumidifkation system coupled with reverse osmosis

机译:高温蒸汽驱动的变压加湿除湿系统与反渗透结合的火用分析

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摘要

In this study, exergy analysis of a novel desalination system is presented and discussed. The water desalination is carried out using combined humidification-dehumidification and reverse osmosis technologies. Six system performance parameters are examined: overall exergetic efficiency, equivalent electricity consumption, specific exergy destruction, specific exergy lost, and total true specific exergy lost, as well as the exergy destruction ratios of the main components. The total true specific exergy lost is a new parameter presented in this study. It is a function of summation of total the exergy destruction rate and loss per total mass flow rate of the total pure water produced. This parameter is found to be a useful parameter to assess the exergetic performance of the system considered. By contrast, use of overall exergetic efficiency as an assessment tool can result in misleading conclusions for such a desalination system and, hence, is not recommended. Furthermore, this study reveals that the highest exergy destruction occurs in the thermal vapor compressor, which accounts for 50% of the total exergy destruction of the system considered. This study, in addition, demonstrates that the specific exergy destruction of the dehumidifier and TVC are the parameters that most strongly affect the performance of the system.
机译:在这项研究中,提出并讨论了一种新型淡化系统的火用分析。使用加湿-除湿和反渗透技术相结合进行水脱盐。检验了六个系统性能参数:总体能效,等效电量,比能值损失,比能值损失和真实总比能值损失,以及主要组件的能值破坏率。总真实比火用损失是这项研究提出的新参数。它是所产生的总纯水的总火用破坏率和每单位质量流量损失的总和。发现该参数是评估所考虑系统的积极性能的有用参数。相比之下,将总体能效用作评估工具可能会导致对这种淡化系统的误导性结论,因此不建议使用。此外,这项研究表明,最高的火用破坏发生在热蒸汽压缩机中,占所考虑系统总火用破坏的50%。此外,这项研究表明,除湿机和TVC的比能级破坏是最强烈影响系统性能的参数。

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