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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Solar absorptance and thermal emittance of cermets with large particles
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Solar absorptance and thermal emittance of cermets with large particles

机译:大颗粒金属陶瓷的日光吸收率和热发射率

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摘要

We evaluate, theoretically, the solar absorptance and thermal emittance of cermets with large particles. In particular, we consider Co and Ni particles with radii from 0.05 to 0.13 mum, embedded in binders of alumina and silica, respectively. For these particle sizes, it is necessary to consider the effect of the multiple scattering of light in the material for the visible and near infrared parts of the spectrum. The response of the particles is calculated using the Lorenz-Mie theory, and the multiple scattering effects are taken into account through a four-flux radiative transfer model. In the medium infrared, the Lorenz-Mie theory cannot be used because of the high absorption of the binder. The reflectance of thr cermets in this regime is calculated using the Maxwell-Garnett effective medium approximation. In general, moderate values of the absorptance-to-emittance ratio are found. [References: 32]
机译:我们从理论上评估大颗粒金属陶瓷的日光吸收率和热发射率。特别是,我们考虑了半径分别为0.05至0.13微米的Co和Ni颗粒,它们分别嵌入氧化铝和二氧化硅的粘合剂中。对于这些粒径,有必要考虑材料中光的多次散射对光谱的可见和近红外部分的影响。使用Lorenz-Mie理论计算粒子的响应,并通过四通量辐射传输模型考虑多重散射效应。在中红外中,由于粘合剂的高吸收性,因此无法使用Lorenz-Mie理论。使用Maxwell-Garnett有效介质近似值来计算这种情况下金属陶瓷的反射率。通常,找到中等的吸收率与发射率之比。 [参考:32]

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