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首页> 外文期刊>Energy Conversion & Management >Theoretical investigation of solar humidification-dehumidiflcation desalination system using parabolic trough concentrators
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Theoretical investigation of solar humidification-dehumidiflcation desalination system using parabolic trough concentrators

机译:抛物线槽式聚光器用于太阳能加湿-除湿除盐系统的理论研究

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摘要

This paper deals with the status of solar energy as a clean and renewable energy applications in desalination. The object of this research is to theoretically investigate the principal operating parameters of a proposed desalination system based on air humidification-dehumidification principles. A parabolic trough solar collector is adapted to drive and optimize the considered desalination system. A test setup of the desalination system was designed and a theoretical simulation model was constructed to evaluate the performance and productivity of the proposed solar humidification-dehumidification desalination system. The theoretical simulation model was developed in which the thermodynamic models of each component of the considered were set up respectively. The study showed that, parabolic trough solar collector is the suitable to drive the proposed desalination system. A comparison study had been presented to show the effect of the different parameters on the performance and the productivity of the system. The productivity of the proposed system showed also an increase with the increase of the day time till an optimum value and then decreased. The highest fresh water productivity is found to be in the summer season, when high direct solar radiation and long solar time are always expected. The production time reaches a maximum value in the summer season, which is 42% of the day.
机译:本文探讨了太阳能在海水淡化中作为清洁和可再生能源应用的现状。这项研究的目的是从理论上研究基于空气加湿-除湿原理的海水淡化系统的主要工作参数。抛物槽式太阳能收集器适于驱动和优化所考虑的脱盐系统。设计了脱盐系统的测试装置,并构建了理论仿真模型,以评估所提出的太阳能加湿-除湿脱盐系统的性能和生产率。建立了理论模拟模型,其中分别建立了所考虑的各个组成部分的热力学模型。研究表明,抛物线槽式太阳能集热器适合驱动拟议的海水淡化系统。提出了一项比较研究,以显示不同参数对系统性能和生产率的影响。所提出的系统的生产率还显示出随着白天时间的增加而增加,直到达到最佳值,然后降低。发现最高的淡水生产率是在夏季,这时总是期望有较高的直接太阳辐射和较长的太阳时间。生产时间在夏季达到最大值,为一天的42%。

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