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Theoretical approach of a flat plate solar collector with clear and low-iron glass covers taking into account the spectral absorption and emission within glass covers layer

机译:具有透明和低铁玻璃盖的平板太阳能集热器的理论方法,考虑到玻璃盖层内的光谱吸收和发射

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Accurate modeling of solar collector system using a rigorous radiative model is applied for the glass cover which represents the most important component of the system and greatly affects the thermal performance. The glass material is analyzed as a non-gray plane-parallel medium subjected to solar and thermal irradiations in one dimensional case using the radiation element method by ray emission model (REM~2). The optical constants of a clear and low-iron glass materials proposed by Rubin have been used. These optical constants, 160 values of real part n and imaginary part k of the complex refractive index of such materials, cover the range of interest for calculating the solar and thermal radiative transfer through the glass cover. The computational times for predicting the thermal behavior of solar collector were found to be prohibitively long for the non-gray calculation using 160 values of n and k for both glasses. Therefore, suitable semi-gray models have been proposed for rapid calculation. The temperature distribution within the glass cover shows a good agreement with that obtained with iterative method in case of clear glass. It has been shown that the effect of the non-linearity of the radiative heat exchange between the black plate absorber and the surroundings on the shape of the efficiency curve is important. Indeed, the thermal loss coefficient is not constant but is a function of temperature, due primarily to the radiative transfer effects. Therefore, when the heat exchange by radiation is dominant compared with the convective mode, the profile of the efficiency curve is not linear. It has been also shown that the instantaneous efficiency of the solar collector is higher in case of low-iron glass cover.
机译:使用严格的辐射模型对玻璃集热器进行精确建模,该玻璃集热器代表了系统的最重要组成部分,并极大地影响了热性能。通过射线发射模型(REM〜2),使用辐射元件法将玻璃材料作为一类非灰色平面平行介质,在一维的情况下经受太阳和热辐射。已经使用了鲁宾提出的透明且低铁的玻璃材料的光学常数。这些光学常数,即此类材料的复数折射率的实部n和虚部k的160值,涵盖了计算通过玻璃盖的太阳辐射和热辐射传递的关注范围。对于使用两种玻璃的160个n和k值的非灰色计算,发现预测太阳能收集器热行为的计算时间过长。因此,已经提出了合适的半灰色模型用于快速计算。在透明玻璃的情况下,玻璃盖内的温度分布与通过迭代方法获得的温度分布具有良好的一致性。已经表明,在黑板吸收器和周围环境之间的辐射热交换的非线性对效率曲线的形状的影响是重要的。实际上,主要由于辐射传递效应,热损失系数不是恒定的而是温度的函数。因此,与对流模式相比,当辐射热交换占主导地位时,效率曲线的轮廓不是线性的。还显示出,在低铁玻璃盖的情况下,太阳能收集器的瞬时效率更高。

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