首页> 外文期刊>Journal of engineering physics and thermophysics >RADIATIVE-CONDUCTIVE HEAT TRANSFER IN A SEMITRANSPARENT COMPOSITE WITH MICROSPHERICAL PARTICLES
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RADIATIVE-CONDUCTIVE HEAT TRANSFER IN A SEMITRANSPARENT COMPOSITE WITH MICROSPHERICAL PARTICLES

机译:具有半球状颗粒的半透明复合材料中的辐射传导热传递

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摘要

A mathematical model for calculating the temperature field in a semitransparent composite material that includes a polymethyl methacrylate matrix and quartz microspheres is suggested. In calculating the optical properties of the composite material, use was made of the optical properties of the matrix and of the interacting quartz microspheres at different filling factors which characterize the volume concentration of particles in the matrix. Allowance for the interaction between the composite components is made following the Maxwell-Garnett approximation. Data on the complex refractive index of the composite were used for calculating the coefficients of absorption, scattering, and attenuation of packed particles by the Mie theory. The temperature fields in a layer of the material are found from solving the boundary-value problem for the energy equation and a system of radiation transfer equations with the use of these coefficients.
机译:提出了一种数学模型,用于计算包含聚甲基丙烯酸甲酯基体和石英微球的半透明复合材料中的温度场。在计算复合材料的光学性质时,利用了基质和相互作用的石英微球在不同填充因子下的光学性质,这些特征表征了基质中颗粒的体积浓度。复合组件之间的相互作用的容差遵循麦克斯韦-加纳特近似值。根据米氏理论,使用复合材料的复折射率数据来计算堆积颗粒的吸收,散射和衰减系数。通过使用这些系数解决能量方程和辐射传输方程系统的边值问题,可以找到材料层中的温度场。

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