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Radiative characteristics of opacifier-loaded silica aerogel composites

机译:填充遮光剂的二氧化硅气凝胶复合材料的辐射特性

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Radiative characteristics of opacifier-loaded silica aerogel composites such as specific spectral extinction coefficient and Rossland mean extinction coefficient were usually calculated by the Fourier infrared spectral experiment and the Beer law. For the composites, it needs lots of experiments to find the proper opacifier categories, contents, and sizes, hence, the optimal design becomes difficult. Based on this reason, this work proposes a theoretical method with four sub-models to evaluate the radiative characteristics of opacifier-loaded silica aerogel composites. First, the Fourier infrared spectral experiment and the modified Kramers-Kr?nig (K-K) relation are used to calculate the basic optical constants of the opacifier (complex refractive index). Second, the extinction efficiency of a single opacifier particle is calculated based on its complex refractive index. Third, the spectral and Rossland extinction coefficients of opacifier particle assemble are calculated by using extinction efficiency and mass fraction of opacifier. Finally, the spectral and Rossland extinction coefficients and radiative heat conductivity of the composite are obtained. The radiative characteristics of six kinds of opacifiers with various particle diameters are investigated by using the present models. The results show that optimal opacifier and its diameter are strongly temperature-dependent. The optimal diameter of opacifier reduces with increased temperature, and SiC is the best choice due to its high-temperature stability. A gradient design of composite is proposed based on the temperature-dependent optimal opacifier and its diameter, which significantly reduces radiative heat transfer compared to the traditional design.
机译:通常通过傅立叶红外光谱实验和比尔定律来计算负载遮光剂的二氧化硅气凝胶复合材料的辐射特性,例如比光谱消光系数和Rossland平均消光系数。对于复合材料,需要大量实验才能找到合适的遮光剂类别,含量和尺寸,因此,优化设计变得困难。基于这个原因,这项工作提出了一种具有四个子模型的理论方法来评估负载遮光剂的二氧化硅气凝胶复合材料的辐射特性。首先,使用傅立叶红外光谱实验和改进的Kramers-Kr?nig(K-K)关系式来计算遮光器的基本光学常数(复折射率)。其次,根据单个遮光剂颗粒的复折射率来计算其消光效率。第三,利用消光剂的消光效率和质量分数,计算了消光剂颗粒组装体的光谱消光系数和Rossland消光系数。最后,获得了复合材料的光谱和Rossland消光系数以及辐射热导率。利用本模型研究了六种不同粒径的遮光剂的辐射特性。结果表明,最佳遮光剂及其直径与温度密切相关。遮光剂的最佳直径随温度升高而减小,而SiC因其高温稳定性而成为最佳选择。基于与温度相关的最佳遮光剂及其直径,提出了一种复合材料的渐变设计,与传统设计相比,该设计显着降低了辐射传热。

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