首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Studies on latent heat energy storage (LHES) materials for solar desalination application-focus on material properties, prioritization, selection and future research potential
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Studies on latent heat energy storage (LHES) materials for solar desalination application-focus on material properties, prioritization, selection and future research potential

机译:太阳海水淡化潜热能储存(床)材料的研究 - 专注于材料特性,优先级,选择和未来研究潜力

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In recent years latent heat energy storage (LHES) has received a worldwide focus in the area of solar still applications. Among various techniques available to improve the productivity of solar stills, heat storage is one of the proverbial areas in the present scenario. LHES surpasses sensible heat energy storage (SHES) in solar still applications owing to its properties like latent heat, thermal conductivity, etc. Focus has to be given in the selection of suitable LHES material since its properties are very significant during the performance and operation of solar stills. Though previous reviews on LHES in solar stills focus only on the productivity enhancement, this paper presents an up to date comprehensive review exclusively about LHES in solar stills focusing on its productivity, properties of LHES materials and the mechanisms behind the variation in properties of LHES materials. Further, in addition to this, a detailed analysis is also presented in this paper by employing analytical hierarchy process (AHP) which enable the researchers to prioritize the properties during the selection of LHES in solar still applications. Besides AHP analysis, we also evaluate the relative efficiency of the available LHES materials for solar still application by data envelopment analysis (DEA) to find the frontier LHES materials thereby suggesting the methods to augment the properties of the frontier material (identified through DEA analysis). Thus, this paper may be a reference guide in the near future for the academicians, researchers to get an overview about the various LHES materials used in solar stills and significance of their properties for improving the yield in solar still applications.
机译:近年来,潜热能储存(贷方)在太阳能应用领域获得全球焦点。在可用于提高太阳剧本的生产率的各种技术中,蓄热是本场景中的众所周知的区域之一。由于其特性,由于潜热,导热率等的性质,厚度在太阳能静止应用中仍然存在于太阳能静态应用中的明智的热能存储太阳能剧照。虽然之前的太阳灯仍然在生产力增强的情况下,虽然在太阳能池中的速度焦点,但本文提出了最新的综合审查,专注于太阳能仍在关注其生产力,嘴丝材料的特性以及床材料性质变化的机制的综合综述。 。此外,除此之外,本文还通过采用分析层次处理(AHP)来介绍详细分析,这使得研究人员能够在太阳静物应用中选择嘴中的特性优先考虑性质。除AHP分析外,还通过数据包络分析(DEA)评估可用床仍然申请的可用床材料的相对效率,从而建议增加前者材料的性质的方法(通过DEA分析识别) 。因此,本文可能是院士的不久的将来参考指南,研究人员概述了关于太阳能仍然存在的各种床材料的概要以及其性质的重要性,以提高太阳能仍然应用的产量。

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