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Application design and assessment of a novel small-decentralized solar distillation device based on energy, exergy, exergoeconomic, and enviroeconomic parameters

机译:基于能量,漏洞,Exergo经济和环境的新型小型微型太阳蒸馏装置的应用设计与评估

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摘要

In this paper, a novel small-decentralized desalination device is presented for increasing the temperature difference between brackish water and glass cover, so as to enhance the solar still's freshwater productivity. This novel solar still device is based on installing a lens in front of the single slope solar still, and two lenses on still's both sides, and a reflector over the back side of the solar still. The main objective of such novel still is to concentrate sunrays at the still's bottom basin, through the refraction function of Fresnel lens. Furthermore, this novel still makes the reflector transferring its reflected sunrays to the solar still's basin. Experiments are conducted under the climate conditions in Hangzhou city, China, for testing the novel still's operational performance, and internal heat and mass transfer characteristics. Assessment of the novel still's feasibility is performed based on energy, exergy, exergoeconomic, and enviroeconomic methodologies, as well as energy payback time. Results show that the productivity of novel still is 32% higher than that of conventional still, and novel solar still enhances the average hourly energy efficiency by 97.73%, compared to conventional solar still. While, the corresponding value of hourly exergy efficiency is also enhanced by 43.713%. Due to the higher energy and exergy outputs of novel still throughout its lifetime, the novel solar still proposed in this study mitigates more CO2 compared to the conventional still. Overall, incorporation three lenses and one reflector with the still is found promising in terms of freshwater yield, cost, and energy payback time compared to conventional one. Exergoeconomic and environmental parameters of the novel solar still are found more effective compared to the conventional one. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型小型分散的脱盐装置,用于提高咸水和玻璃盖之间的温差,以提高太阳仍然是淡水生产率。该新颖的太阳能静止装置基于在单个斜坡太阳阶段前面的安装镜头,仍然是两侧的两个镜头,以及太阳能背面的反射器。这种小说的主要目的仍然是通过菲涅耳透镜的折射函数集中在仍然底部盆地处的阳光。此外,这部小说仍然使反射器将其反射的阳光转移到太阳仍然的盆地。实验是根据中国杭州市的气候条件进行的,用于测试小说仍然的运行性能,内部热量和传质特征。基于能源,出境,exergo经济和环境的评估仍然可行性的评估,以及能量投资回收期。结果表明,与常规的太阳相比,新颖的新颖生产仍然高于传统仍然高出32%,而新的太阳能仍然增强了97.73%的平均小时能效。虽然,每小时高效的相应值也增强了43.713%。由于在整个寿命期间的新颖的能量和漏洞输出仍然是,这项研究中仍然提出的新型太阳能仍然提出了与常规仍然相比的二氧化碳。总体而言,与常规的淡水产量,成本和能量投资回收期仍然有前途的三个镜头和一个反射器仍然存在。与传统的相比,新型太阳的Exergo经济和环境参数仍然更有效。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2021年第2期|1350-1363|共14页
  • 作者

    Fang Shibiao; Mu Lin; Tu Wenrong;

  • 作者单位

    Shenzhen Univ Coll Life Sci & Oceanog Shenzhen 518060 Peoples R China|China Univ Geosci Shenzhen Res Inst Shenzhen 518057 Peoples R China|Southern Marine Sci & Engn Guangdong Lab Guangzho Guangzhou 511458 Peoples R China|China Univ Geosci Coll Marine Sci & Technol 388 Lumo Rd Wuhan 430074 Peoples R China|Zhejiang Univ Hangzhou 310058 Peoples R China;

    Shenzhen Univ Coll Life Sci & Oceanog Shenzhen 518060 Peoples R China|China Univ Geosci Shenzhen Res Inst Shenzhen 518057 Peoples R China|Southern Marine Sci & Engn Guangdong Lab Guangzho Guangzhou 511458 Peoples R China;

    Zhejiang Univ Hangzhou 310058 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar distillation; Concentrating solar heat; Refraction and reflection; Energy and exergy; Exergoeconomic; Environmental parameters;

    机译:太阳蒸馏;浓缩太阳能热;折射和反射;能量和漏洞;exergo经济;环境参数;

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