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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Toward a quantitative model for suspended particle devices: Optical scattering and absorption coefficients
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Toward a quantitative model for suspended particle devices: Optical scattering and absorption coefficients

机译:建立悬浮粒子设备的定量模型:光学散射和吸收系数

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摘要

Suspended particle devices (SPDs) allow rapid voltage-controlled modulation of their optical transmittance and are of interest for solar-energy-related and other applications. We investigated the spectral total and diffuse transmittance of an SPD, including its angular dependence. The optical modulation was large for visible light but almost nil in the infrared, and the devices had noticeable haze. A theoretical two-flux model was formulated and provided a quantitative description of the absorption and scattering coefficients and thereby of the detailed optical performance. This analysis gives a benchmark for assessing improvements of the SPD technology as well as for comparing it with alternative technologies for optical modulation.
机译:悬浮粒子器件(SPD)允许对其光透射率进行快速电压控制调制,并且对于太阳能相关的应用和其他应用非常感兴趣。我们研究了SPD的光谱总透射率和漫透射率,包括其角度依赖性。对于可见光,光学调制很大,但是在红外光中几乎没有,并且这些器件具有明显的雾度。建立了理论上的两通量模型,并定量描述了吸收系数和散射系数,从而提供了详细的光学性能。该分析为评估SPD技术的改进以及将其与光调制的替代技术进行比较提供了基准。

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