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Optical properties of nanofluids considering particle size distribution: Experimental and theoretical investigations

机译:考虑粒度分布的纳米流体的光学性质:实验和理论研究

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Solar-thermal conversion is an effective means to collect solar energy. Nanofluids as thermal absorption media or optical filters have shown great potential for application in direct absorption solar collector or hybrid photovoltaic/thermal (PV/T) collectors. Many researches have demonstrated that nanofluids, by adding certain nanoparticles, can dramatically enhance the radiation absorption property of base liquid. The optical properties of nanofluids could also be significantly affected by the size and distribution of nanoparticles. What's more, due to the high surface energy of nanoparticles, they have a great tendency to collide and aggregate into larger clusters. Obviously there is a close relationship between the aggregations of nanoparticles in nanofluids and their on optical properties. However, a systematic summary and review of those reports is lacked. In this review, firstly, the models describing aggregation processes of nanoparticles, i.e., population balance equations, Monte Carlo simulation and Brownian dynamic simulation, have been systematically introduced. Then, the basic optical models. and optical models considering aggregation are summarized. Two possible problems and their solutions in the experimental investigation of optical properties of nanofluids are also discussed. Based on the discussions, the challenges that are expected to limit the predicting accuracy of optical properties of nanofluid are summarized which are supposed to be worth much in-depth study in the future.
机译:太阳热能转换是收集太阳能的有效手段。纳米流体作为热吸收介质或滤光片,已显示出在直接吸收太阳能集热器或光伏/热(PV / T)混合集热器中的巨大潜力。许多研究表明,通过添加某些纳米颗粒,纳米流体可以显着增强基础液体的辐射吸收性能。纳米流体的光学性质也可能受到纳米颗粒的大小和分布的显着影响。此外,由于纳米粒子的高表面能,它们具有碰撞并聚集成较大簇的趋势。显然,纳米流体中纳米颗粒的聚集与其光学性质之间存在密切的关系。但是,缺乏对这些报告的系统总结和审查。在这篇综述中,首先,系统地介绍了描述纳米粒子聚集过程的模型,即种群平衡方程,蒙特卡洛模拟和布朗动态模拟。然后是基本的光学模型。总结了考虑聚集的光学模型。还讨论了纳米流体光学性质实验研究中的两个可能的问题及其解决方案。在讨论的基础上,总结了有望限制纳米流体光学特性预测准确性的挑战,这些挑战值得在未来进行深入研究。

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