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Effect of nanoparticle aggregation on the thermal radiation properties of nanofluids: an experimental and theoretical study

机译:纳米粒子聚集在纳米流体热辐射性能下的影响:实验与理论研究

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Nanofluids show significant enhancement in the absorption of solar energy. However, little work has been done on the effect of nanoparticle aggregation on the thermal radiation properties of nanofluids up to now. In this work, we systematically investigate the thermal radiation properties of nanofluids with nanoparticle aggregation from experiment and theory. On the experimental side, titanium dioxide/silver (TiO_2@Ag) plasmonic nanofluids are prepared in distilled water and the spectral transmittance of nanofluids with different degrees of aggregation is measured. The result shows that the size of aggregated nanoparticle cluster has a significant effect on the absorption of nanofluids. On the theoretical side, a theoretical model is developed to calculate the thermal radiation properties of nanofluids with nanoparticle aggregation. By applying the multiple sphere T-matrix (MSTM) method and the Monte Carlo (MC) method, we investigate the effects of nanoparticle aggregation, cluster fractal dimensions and cluster sizes on the thermal radiation properties of nanofluids. The results indicate that our theoretical model can predict the thermal radiation properties of nanofluids with nanoparticle aggregation more reasonably. This is of great significance to understand the mechanism that affects the thermal radiation properties of nanofluids and to actively design nanofluids.
机译:纳米流体显示出太阳能吸收的显着增强。然而,纳米粒子聚集在纳米流体的热辐射性能的影响下已经完成了很少的作用。在这项工作中,我们从实验和理论系统地研究了纳米粒子聚集的纳米流体的热辐射性能。在实验侧,在蒸馏水中制备二氧化钛/银(TiO_2 @ AG)等离子体纳米流体,并测量具有不同聚集程度的纳米流体的光谱透射率。结果表明,聚集纳米粒子簇的尺寸对纳米流体的吸收具有显着影响。在理论方面,开发了理论模型以计算纳米颗粒聚集的纳米流体的热辐射性能。通过施加多个球体T矩阵(MSTM)方法和蒙特卡罗(MC)方法,我们研究了纳米粒子聚集,簇分形尺寸和簇大小对纳米流体的热辐射性能的影响。结果表明,我们的理论模型可以更合理地预测纳米粒子聚集的纳米流体的热辐射性能。理解影响纳米流体的热辐射性能并主动设计纳米流体的机制具有重要意义。

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