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首页> 外文期刊>Solar Energy >Experimental characterisation of different hermetically sealed horizontal, cylindrical double vessel Integrated Collector Storage Solar Water Heating (ICSSWH) prototypes
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Experimental characterisation of different hermetically sealed horizontal, cylindrical double vessel Integrated Collector Storage Solar Water Heating (ICSSWH) prototypes

机译:不同气密密封水平,圆柱双血管集成集电器储存太阳能加热(IC​​SSWH)原型的实验表征

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摘要

Existing Integrated Collector Storage Solar Water Heaters (ICSSWHs) are typically simple and low-cost devices that combine heat collection and storage functions in one unified vessel. However, during non-collection periods they are affected by higher heat loss characteristics when compared to standard solar collector systems. This paper introduces the design evolution of new horizontal cylindrical ICSSWH prototypes developed at Ulster University that use novel, patented double vessel, thermal diode features (to enhance heat retention during non-collection periods) achieved by incorporating a liquid-vapour phase change material (PCM) with a very low pressure annular cavity. The energy performance evaluation and characterisation of different prototype designs under solar simulated experimental conditions has been conducted and the subsequent parametric analysis presented. A balance between performance and physical/operational considerations is necessary to ensure that new and practical design solutions (in materials, fabrication and assembly) can be formulated to improve the performance of the ICSSWHs within the limits of commercial reality. The importance of augmenting heat transfer across the annulus cavity has been demonstrated with improvement of the cold-start daily collection efficiency from around (eta(col)) of 20% (no HTF), to 55% when the annulus is evacuated to remove non-condensable gases and form a liquid-vapour phase change thermal diode. Annulus thermal diode heat transfer coefficients of around (U-fr) 35 W/m(2)K in forward mode and 2 W/m(2)K in reverse mode have been demonstrated. Diurnal thermal efficiencies (eta(col24)) of 22% have been measured, but values of 39% have been identified as achievable in the longer-term development of presented ICSSWH.
机译:现有的集成集电极存储太阳能热水器(ICSSWHS)通常是简单且低成本的设备,可在一个统一的船舶中结合热收集和存储功能。然而,与标准太阳能收集器系统相比,在非收集期间,它们受到更高的热量损耗特性的影响。本文介绍了在乌斯特大学开发的新型水平圆柱形ICSSWH原型的设计演变,该原型采用新型专利的双血管,热二极管特征(在非收集期间提高热保留),通过掺入液相变化材料(PCM )具有非常低的压力环形腔。已经进行了太阳模拟实验条件下不同原型设计的能量性能评估和表征,并提出了随后的参数分析。可以配制性能和物理/操作考虑因素之间的平衡,以确保可以制定新的和实用的设计解决方案(以材料,制造和组装),以改善ICSSWHS在商业现实范围内的性能。通过从20%(NO HTF)周围(ETA(COL))的冷启动日常收集效率(NO)(NO HTF)的冷启动日常收集效率提高,当倒影拆卸时,已经证明了增强环腔的热传递的重要性不可冷凝的气体并形成液 - 气相变化热二极管。已经证明了在正模式下(U-FR)35W / m(2)k的环空热量传热系数和反向模式下的2W / m(2)k。已经测量了22%的昼夜热效率(ETA(COL24)),但在呈现的ICSSWH的长期发展中,39%的值已被确定为可实现的。

著录项

  • 来源
    《Solar Energy》 |2020年第8期|695-707|共13页
  • 作者单位

    Univ Ulster Sch Architecture & Built Environm Ctr Sustainable Technol CST Newtownabbey North Ireland;

    Univ Ulster Sch Architecture & Built Environm Ctr Sustainable Technol CST Newtownabbey North Ireland;

    Univ Ulster Sch Architecture & Built Environm Ctr Sustainable Technol CST Newtownabbey North Ireland;

    Univ Ulster Sch Architecture & Built Environm Ctr Sustainable Technol CST Newtownabbey North Ireland;

    Univ Ulster Sch Architecture & Built Environm Ctr Sustainable Technol CST Newtownabbey North Ireland;

    SolaForm Ltd IUL Block 26 Newtownabbey BT37 0QB North Ireland;

    Free Univ Bozen Bolzano Fac Sci & Technol Bozen Bolzano Italy;

    Univ Naples Federico II Dept Ind Engn Naples Italy;

    Univ Naples Federico II Dept Ind Engn Naples Italy;

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

    Solar thermal collector; ICSSWH; Double vessel; Thermal diode; Solar simulator;

    机译:太阳能收集器;ICSSWH;双血管;热二极管;太阳模拟器;

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