首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Experimental investigation of a solar still equipped with an external heat storage system using phase change materials and heat pipes
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Experimental investigation of a solar still equipped with an external heat storage system using phase change materials and heat pipes

机译:太阳能的实验研究仍然配备了使用相变材料和热管的外部蓄热系统

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摘要

In this study, a novel idea of storing the latent heat of condensing vapor in solar stills by means of phase change materials (PCMs) as a thermal storage is experimentally investigated. During the daytime, the generated water vapor by the solar energy, is conducted to an external condenser filled with PCM to be condensed. The wasted latent heat is absorbed by PCM and thereby stored. It is worth noting that there is no direct contact between the saline water and the PCM, therefore, the solar energy is not directly stored in the PCM. In the evening, the energy stored in the PCM is transferred as heat to the saline water by heat pipes and enables the desalination process to continue. Several tests were run to investigate the performance of the system. The results revealed that the presence of an external condenser filled with PCM and equipped with heat pipes in a solar still with evacuated tube collectors, makes the desalination process continue after the sunset without causing a decrease in the yield during the daytime. The yield increases by 86% as compared to the yield of the system without PCM and reaches to 6.555 kg/m(2) day with the efficiency of 50%. (C) 2017 Elsevier B.V. All rights reserved.
机译:在该研究中,通过相变材料(PCM)作为热储存将蒸汽在太阳能蒸汽上静脉蒸汽的潜热的思想进行了实验研究。在白天,通过太阳能产生的水蒸汽,用于填充有PCM的外部冷凝器待冷凝。浪费的潜热被PCM吸收,从而储存。值得注意的是,盐水水和PCM之间没有直接接触,因此,太阳能不直接存储在PCM中。在晚上,储存在PCM中的能量通过热管作为热量转移到盐水中,并使脱盐过程能够继续。运行几次测试以研究系统的性能。结果表明,填充PCM的外部冷凝器的存在并配备仍然具有抽空管收集器的太阳能热管,使脱盐过程在日落之后继续,而不会导致白天产量降低。与没有PCM的系统的产率相比,产量增加了86%,达到6.555千克/米(2)天,效率为50%。 (c)2017年Elsevier B.V.保留所有权利。

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