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Techno-economic analysis of solar stills using integrated fuzzy analytical hierarchy process and data envelopment analysis

机译:使用综合模糊分析层次流程和数据包络分析的太阳能静止技术经济分析

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摘要

Desalination using solar stills is an ancient economic method for water desalination. Over the years, research and development in the area of solar still has resulted in increased distillate yield by means of integration of PCM (phase change material), photo-voltaic thermal (PVT), etc with the still. Nano-PCM is an upcoming technology which modifies the thermal performance of PCM. The aim of this research is to analyze the efficiency of 20 solar stills including nano-PCM based solar stills considering various input and output criteria using integrated fuzzy analytical hierarchy process (AHP) and data envelopment analysis (DEA). The efficiency derived here is relative with regard to the parameters and stills considered in this study. The result infers that, even though the productivity of stepped solar still with sun tracking system was high, but when techno-economic aspects were considered it is not among the top solar stills. The analysis indicated pyramid type solar still, single slope solar still with PVT, solar still with NPCM (paraffin + copper oxide), solar still with NPCM (paraffin + titanium dioxide) and solar still with PCM (paraffin) occupies the top five positions with relative efficiency of 100, 100, 88.47, 88.46 and 76.93% respectively.
机译:使用太阳能剧烈的海水淡化是一种古老的水海水化经济方法。多年来,通过静止的PCM(相变材料),光伏热(PVT)等,仍然导致蒸馏产量增加了馏分产量。 Nano-PCM是一种即将到来的技术,可改变PCM的热性能。本研究的目的是分析20个太阳剧本的效率,包括基于纳米PCM的太阳能仍在考虑使用集成模糊分析层次(AHP)和数据包络分析(DEA)的各种输入和输出标准。这里衍生的效率是关于该研究中考虑的参数和静止的效率。结果是,即使阶梯式太阳能仍然具有太阳跟踪系统的阶梯太阳的生产率很高,但是当考虑技术经济方面时,它不是顶级太阳能剧本。分析指示金字塔型太阳能仍然,单斜率太阳仍用PVT,太阳能仍用NPCM(石蜡+氧化铜),仍用NPCM(石蜡+二氧化钛)和太阳仍用PCM(石蜡)占用前五个职位相对效率为100,100,88.47,88.46和76.93%。

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