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首页> 外文期刊>International Journal of Thermal Sciences >Optical and radiative properties of infrared opacifier particles loaded in silica aerogels for high temperature thermal insulation
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Optical and radiative properties of infrared opacifier particles loaded in silica aerogels for high temperature thermal insulation

机译:二氧化硅气凝胶中用于高温绝热的红外遮光剂颗粒的光学和辐射特性

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摘要

An inverse model based on the shooting method, Mie theory and the improved Kramers-Kronig (KK) relation was combined with FTIR and Abbe refractometer measurements to calculate the complex refractive indices of various infrared opacifiers. The effects of opacifier sizes, types and shapes were then analyzed based on the Rosseland mean extinction coefficient using Mie theory and anomalous diffraction theory (ADT). This model provides theoretical guidelines for designing materials with optimized parameters, such as size, type and shape of opacifiers, to improve the aerogel thermal insulation at high temperatures. The results show that the optimum diameter of SiC particles to minimize the radiation is 4 μm for T < 400 K and 3 μm for T > 400 K. Carbon black is the optimum opacifier for T < 600 K while SiC is the optimum opacifier to minimize the radiative heat transfer for T > 600 K among the investigated opacifiers of SiC, TiO_2, ZrO_2, amorphous SiO_2 and carbon black. The infrared extinction ability for various shapes is largest for oblate spheroids and decreases for spheres, cubes, cylinders with small length-to-diameter ratios, and then long, thin cylinders.
机译:将基于射击方法,Mie理论和改进的Kramers-Kronig(KK)关系的逆模型与FTIR和Abbe折光仪测量结果相结合,以计算各种红外遮光剂的复折射率。然后使用Mie理论和反常衍射理论(ADT),基于Rosseland平均消光系数,分析遮光剂尺寸,类型和形状的影响。该模型为设计具有优化参数(例如遮光剂的尺寸,类型和形状)的材料提供了理论指导,以改善高温下的气凝胶隔热性。结果表明,最小化辐射的SiC颗粒的最佳直径在T <400 K时为4μm,在T> 400 K的情况下为3μm。炭黑是T <600 K的最佳遮光剂,而SiC是最小化的最佳遮光剂研究了SiC,TiO_2,ZrO_2,无定形SiO_2和炭黑的遮光剂中T> 600 K的辐射传热。各种形状的红外消光能力对于扁球形球体最大,而对于长径比较小的球体,立方体,圆柱体,然后是细长的圆柱体,红外消光能力会下降。

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