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An analytical model for combined radiative and conductive heat transfer in fiber-loaded silica aerogels

机译:纤维负载二氧化硅气凝胶中辐射与传导相结合的传热分析模型

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摘要

An improved analytical model for the total thermal conductivity of fiber-loaded silica aerogels was developed based on the complex refractive index, size, orientation, volume fraction and morphology of the fibers and silica aerogel. A cubic array of spherical porous secondary nanoparticles and a modified parallel-series model were proposed to model the combined solid and gaseous thermal conductivities. An anomalous diffraction theory (ADT) was used to predict the fiber extinction coefficient. Five common fiber types in the composites were studied including amorphous SiO _2 glass, silicon glass, common float glass, soda lime silica glass and borosilicate glass. The results show that the total extinction coefficient of the silica aerogel system is largest by loading with the common float glass fiber and lowest by loading with the soda lime silica glass among the five fiber types. The model provides theoretic guidelines for material designs with optimum parameters, such as the type, inclination angle, volume fraction and diameter of the fibers as well as the aerogel nanoparticle and pore sizes. The optimum fiber for improved thermal insulation should have a large spectral complex refractive index throughout the infrared region.
机译:基于纤维和二氧化硅气凝胶的复折射率,尺寸,取向,体积分数和形态,开发了一种改进的纤维负载二氧化硅气凝胶总导热系数的分析模型。提出了球形多孔次级纳米粒子的立方阵列和改进的平行系列模型,以模拟固,气热导率的组合。异常衍射理论(ADT)用于预测纤维的消光系数。研究了复合材料中的五种常见纤维类型,包括非晶SiO _2玻璃,硅玻璃,普通浮法玻璃,钠钙硅玻璃和硼硅酸盐玻璃。结果表明,在五种纤维类型中,二氧化硅气凝胶体系的总消光系数以普通浮法玻璃纤维为大,而以钠钙硅玻璃为低。该模型为具有最佳参数的材料设计提供了理论指导,例如纤维的类型,倾角,体积分数和直径以及气凝胶纳米颗粒和孔径。用于改善隔热性能的最佳光纤应在整个红外区域具有较大的光谱复数折射率。

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