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Global advancement on experimental and thermal analysis of evacuated tube collector with and without heat pipe systems and possible applications

机译:具有和无热管系统的抽空管收集器实验和热分析的全球性能及可能的应用

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摘要

Sun is the prime source of energy. There are two types of technologies available for the harnessing of solar energy i.e. Solar Thermal and Solar photovoltaic. Solar thermal energy having a potential to provide the domestic and industrial energy demand for hot water, air heating, solar cooling, solar drying etc. Among multiple applications of solar energy, water heating, space heating, and cooling are consuming more energy. The energy consumption in production of hot water represents a large contribution of total building energy consumption. The Collector is the important aspect for efficient energy needs for these applications. Among all thermal collectors specifically for low/medium temperature applications, evacuated tube collector is found to have the best efficiency. This paper addresses the advancement, different types of evacuated tube collectors and its low/medium temperature applications. The use of heat pipe in evacuated tube has been studied by many researchers around the globe to overcome the lower performance issue in direct flow evacuated tube collector. This turns out to be one of the most important advancement in this area. Another, important advancements in this research have been found to be integration of phase change materials with evacuated tube collector which has the great impact on its performance. This makes the evacuated tube technology more efficient, reliable and user-friendly. This review covers the recent research areas of the direct flow and heat pipe evacuated tube collector with different applications and comprehensive knowledge of the theoretical analysis. This paper also provides financial advantages, classification with and without thermal energy storage, advantages and drawbacks of evacuated technology and future recommendation for future improvement and recent research trend have also incorporated in this manuscript for researchers and practice engineers.
机译:太阳是能量的主要来源。太阳能的利用有两种类型的技术,即太阳能热和太阳能光伏。太阳能热能具有为热水,空气加热,太阳能冷却,太阳能干燥等提供国内和工业能源需求的潜力,在太阳能,水加热,空间加热和冷却中的多种应用中消耗更多的能量。热水生产中的能源消耗代表了总建筑能耗的大贡献。收集器是用于这些应用的有效能量需求的重要方面。在专门用于低/中温度应用的所有热收集器中,发现抽空管收集器具有最佳效率。本文解决了进步,不同类型的废除管收集器及其低/中温应用。通过全球许多研究人员研究了疏散管中的热管的使用,以克服直接流抽空管收集器中的较低性能问题。这结果成为该地区最重要的进步之一。另一方面,已经发现这项研究的重要进步是将相变材料与抽空管收集器的集成相结合,这对其性能产生了重大影响。这使得疏散的管技术更高效,可靠,用户友好。该综述涵盖了近期的直接流动和热管抽空管收集器的研究领域,具有不同的应用和综合了解理论分析。本文还提供了金融优势,分类,无能为力,疏散技术的优缺点和未来改进的未来推荐以及最近的研究趋势也纳入了研究人员和实践工程师的稿件。

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