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Three-dimensional modelling and analysis of solar radiation absorption in porous volumetric receivers

机译:多孔体积接收器中太阳辐射吸收的三维建模与分析

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This work addresses the three-dimensional modelling and analysis of solar radiation absorption in a porous volumetric receiver using the Monte Carlo Ray Tracing (MCAT) method. The receiver is composed of a solid matrix of homogeneous porous material and isotropic properties, bounded on its side by a cylindrical wall that is characterized through a diffuse albedo. The Henyey-Greenstein phase function is used to model the radiation scattering inside the porous media. The effect of the angle of incidence, optical thickness (porosity, pores size and height of the receiver), asymmetry factor of the phase function and wall properties on the solar radiation absorption in the porous media is studied in order to obtain the receiver efficiency as a function of these parameters. The model was validated by comparing the results for a simple geometry composed of a long slab of finite thickness with the values available in the literature, and then tested with a cylindrical receiver using a parabolic dish as concentration system with a concentration factor of 500. A peak of absorbed solar radiation of 156 MW M-3 and an absorption efficiency of 90.55% were obtained for a phase function asymmetry factor of 0.4 (forward scattering) and scattering albedo and extinction coefficient of 0.54 and 100 m(-1), respectively. The results for the diffuse reflectance, diffuse transmittance and absorption are also presented. The model developed in this work is useful to obtain and understand the energy absorption distribution in porous volumetric receivers coupled to solar concentration systems, when different porous structures and geometric parameters are used.
机译:这项工作使用蒙特卡洛射线追踪(MCAT)方法解决了多孔体积接收器中太阳辐射吸收的三维建模和分析问题。接收器由均质多孔材料和各向同性特性的固体基质组成,在其侧面上由圆柱壁界定,圆柱壁的特征是漫反射率。 Henyey-Greenstein相位函数用于模拟多孔介质内部的辐射散射。研究入射角,光学厚度(孔隙度,接收器的孔径和高度),相函数的不对称因子和壁特性对多孔介质中太阳辐射吸收的影响,从而获得接收器的效率为这些参数的函数。通过比较由有限厚度的长平板组成的简单几何结构的结果与文献中提供的值,对模型进行了验证,然后使用抛物线形皿作为浓度系数为500的抛物面皿作为圆柱接收器,对模型进行了测试。相位函数不对称因子为0.4(正向散射),散射反照率和消光系数分别为0.54和100 m(-1)时,吸收的太阳辐射的峰值为156 MW M-3,吸收效率为90.55%。还给出了漫反射率,漫透射率和吸收率的结果。当使用不同的多孔结构和几何参数时,在这项工作中开发的模型对于获得和理解耦合到太阳能集中系统的多孔体积接收器中的能量吸收分布很有用。

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