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Radiative properties of dense nanofluids

机译:致密纳米流体的辐射特性

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摘要

The radiative properties of dense nanofluids are investigated. For nanofluids, scattering and absorbing of electromagnetic waves by nanoparticles, as well as light absorption by the matrix/fluid in which the nanoparticles are suspended, should be considered. We compare five models for predicting apparent radiative properties of nanoparticulate media and evaluate their applicability. Using spectral absorption and scattering coefficients predicted by different models, we compute the apparent transmittance of a nanofluid layer, including multiple reflecting interfaces bounding the layer, and compare the model predictions with experimental results from the literature. Finally, we propose a new method to calculate the spectral radiative properties of dense nanofluids that shows quantitatively good agreement with the experimental results.
机译:研究了致密纳米流体的辐射特性。对于纳米流体,应考虑纳米颗粒对电磁波的散射和吸收,以及其中悬浮有纳米颗粒的基质/流体的光吸收。我们比较了五个模型,用于预测纳米颗粒介质的表观辐射特性,并评估其适用性。使用不同模型预测的光谱吸收和散射系数,我们计算出纳米流体层的视在透射率,包括界定该层的多个反射界面,并将模型预测与文献中的实验结果进行了比较。最后,我们提出了一种计算稠密纳米流体光谱辐射特性的新方法,该方法在定量上与实验结果吻合良好。

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