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Nanotechnology: new hope of efficiency enhancement for solar evacuated tube collector

机译:纳米技术:提高太阳能真空管集热器效率的新希望

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Purpose - In the twenty-first century, the use of fossil fuels has increased drastically because the necessity of energy is increasing day by day which affects the world's economy. The solar energy (photo-thermal energy conversion) system is the most economical and eco-friendly alternative source. To increase the use of domestic as well as commercialization purpose, the authors have reviewed this paper on the solar water heater along with its structural mechanism for energy enhancement and to create easier stair steps for climbing on the green world dream. Design/methodology/approach - In this study, nanotechnology has remarkably built its own use for extending thermal efficiency by using some gradual experiments. It is a phenomenon, like nanofluid (as a working fluid for a direct solar collector), nanocoating (on the surface of a solar-evacuated tube by using the chemical vapor deposition/physical vacuum deposition/sol-gel technique) and nanorod-based solar collector tube. Findings - This invention gives greater efficiency rather than the conventional systems, but also this advancement is not too much supported in a low- temperature environment also, we can consider the poor light absorption characteristics of the pure water (Bencic, ef a/., 2000). Originality/value - The basic idea and understanding of this phenomenon to improve solar collecting performance for obtaining a high working-fluid temperature are discussed in this paper.
机译:目的-在二十一世纪,化石燃料的使用急剧增加,因为能源的需求日益增加,这影响了世界经济。太阳能(光热能转换)系统是最经济,最环保的替代能源。为了增加家用和商业化用途,作者对太阳能热水器及其增强能源的结构机理进行了综述,并为爬上绿色世界的梦想创造了更轻松的阶梯。设计/方法/方法-在这项研究中,纳米技术通过逐步进行实验,显着地建立了自己的用途,以扩展热效率。这是一种现象,例如纳米流体(作为直接太阳能收集器的工作流体),纳米涂层(通过使用化学气相沉积/物理真空沉积/溶胶-凝胶技术在抽真空的管子表面上)和基于纳米棒的现象太阳能集热管。发现-与常规系统相比,本发明具有更高的效率,但是在低温环境中,这种进步也没有得到太多支持,我们可以考虑纯净水的不良光吸收特性(Bencic,ef a .., 2000)。原创性/价值-本文讨论了此现象的基本概念和理解,以提高太阳能收集性能以获得较高的工作流体温度。

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