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纳米流体类型、其合成方法、性质及其在直接太阳能集热器中的应用:综述

Nanofluid Types, Their Synthesis, Properties and Incorporation in Direct Solar Thermal Collectors: A Review.

作者信息

Chamsa-Ard Wisut, Brundavanam Sridevi, Fung Chun Che, Fawcett Derek, Poinern Gerrard

机构信息

Murdoch Applied Nanotechnology Research Group, Department of Physics, Energy Studies and Nanotechnology, Murdoch University, Murdoch, WA 6150, Australia.

School of Engineering and Information Technology, Murdoch University, Murdoch, WA 6150, Australia.

出版信息

Nanomaterials (Basel). 2017 May 31;7(6):131. doi: 10.3390/nano7060131.

Abstract

The global demand for energy is increasing and the detrimental consequences of rising greenhouse gas emissions, global warming and environmental degradation present major challenges. Solar energy offers a clean and viable renewable energy source with the potential to alleviate the detrimental consequences normally associated with fossil fuel-based energy generation. However, there are two inherent problems associated with conventional solar thermal energy conversion systems. The first involves low thermal conductivity values of heat transfer fluids, and the second involves the poor optical properties of many absorbers and their coating. Hence, there is an imperative need to improve both thermal and optical properties of current solar conversion systems. Direct solar thermal absorption collectors incorporating a nanofluid offers the opportunity to achieve significant improvements in both optical and thermal performance. Since nanofluids offer much greater heat absorbing and heat transfer properties compared to traditional working fluids. The review summarizes current research in this innovative field. It discusses direct solar absorber collectors and methods for improving their performance. This is followed by a discussion of the various types of nanofluids available and the synthesis techniques used to manufacture them. In closing, a brief discussion of nanofluid property modelling is also presented.

摘要

全球能源需求不断增长,温室气体排放增加、全球变暖和环境退化带来的有害后果构成了重大挑战。太阳能提供了一种清洁且可行的可再生能源,有潜力减轻通常与基于化石燃料的能源生产相关的有害后果。然而,传统太阳能热转换系统存在两个固有问题。第一个问题涉及传热流体的低导热率值,第二个问题涉及许多吸收器及其涂层的光学性能不佳。因此,迫切需要改善当前太阳能转换系统的热性能和光学性能。包含纳米流体的直接太阳能热吸收集热器为在光学和热性能方面实现显著改善提供了机会。因为与传统工作流体相比,纳米流体具有更强的吸热和传热性能。本综述总结了该创新领域的当前研究。它讨论了直接太阳能吸收集热器及其性能改进方法。随后讨论了可用的各种类型纳米流体以及用于制造它们的合成技术。最后,还简要讨论了纳米流体特性建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/569d/5485778/05faf4b5df76/nanomaterials-07-00131-g001.jpg

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