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Performance enhancement of solar energy systems using nanofluids: An updated review

机译:使用纳米流体提高太阳能系统的性能:最新评论

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摘要

There are various techniques used to enhance the conversion of solar energy into useful forms. Use of nanofluids is one of the prominent techniques in the active research of enhancing the energy utilization. In this paper, an updated review is carried out for various recent studies that illustrate the use of nanofluids in different types of solar collectors for improvement of their performance. In addition, some suggestions are made in relation to the future research directions in view of the prevailing challenges using nanofluids in solar energy systems. It has been witnessed that proper dispersion of nanoparticles is a key issue for adequate solar absorption. Improvement of solar collector performance agrees until certain limit of nanofluid volume fraction above which it can end up with adverse results. Proper combination of particle size, pH value and adequate dispersion of nanoparticles results in efficiency increment. Among all possible nanoparticles carbon nanotubes result in larger enhancement when compared to rest, in general. It is also noted that the optical properties of nanoparticles play a key role in absorption, extinction coefficient and the penetration depth of the solar radiation in the nanofluids. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有多种技术用于增强太阳能向有用形式的转化。纳米流体的使用是积极研究中提高能量利用率的主要技术之一。在本文中,对最近的各种研究进行了更新评估,这些研究说明了纳米流体在不同类型的太阳能收集器中的使用,以改善其性能。另外,鉴于在太阳能系统中使用纳米流体的普遍挑战,针对未来的研究方向提出了一些建议。已经证明,纳米粒子的适当分散是足够的太阳吸收的关键问题。太阳能收集器性能的提高是一致的,直到达到纳米流体体积分数的一定极限为止,在该极限之上,纳米流体体积分数最终会产生不利的结果。粒径,pH值和纳米粒子的充分分散的适当组合会导致效率提高。通常,在所有可能的纳米粒子中,与其余纳米粒子相比,碳纳米管导致更大的增强。还应注意,纳米颗粒的光学性质在纳米流体中的吸收,消光系数和太阳辐射的穿透深度中起关键作用。 (C)2019 Elsevier Ltd.保留所有权利。

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