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Solar optical fiber daylighting system with an IR filter: Experimental and modeling studies

机译:具有IR过滤器的太阳能光纤灯光系统:实验和建模研究

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Solar daylighting system based on low cost thermoplastic optical fiber cables is one of essential and practicable option to save energy associated with electric lighting as well as enhance the visual comfort and human health by using natural solar lighting. In this present study a low-cost solar light system consisting of thermoplastic optical fibers, parabolic mirrored surface and sunlight collector with glass filter to block infrared (IR) radiation, was developed to bring natural sunlight into buildings. The effect of the IR filtration mechanism on the temperature of the thermoplastic optical fiber and the output illuminance, has been examined. The experimental results obviously show that the IR filter would protect the thermoplastic optical fiber from the overheat damage without affecting the output illuminance, which could extend the life time of the thermoplastic polymer optical fiber. Furthermore, an intelligent model based on deep learning neural network (DNN) algorithm was used to predict the temperature at the inlet surface of the thermoplastic optical fiber bundles.
机译:基于低成本热塑性光纤电缆的太阳能日光系统是节省与电照相关的能源的必要且可行的选择之一,并通过使用天然太阳能照明来提高视觉舒适性和人类健康。在本研究中,开发了一种由热塑性光纤,抛物线镜面和阳光收集器组成的低成本太阳能光系统,以阻挡红外线(IR)辐射,使自然阳光带入建筑物。已经研究了IR过滤机制对热塑性光纤和输出照度的温度的影响。实验结果显然表明,红外滤光器将保护热塑性光纤免受过热损坏,而不会影响输出照度,这可以延长热塑性聚合物光纤的寿命。此外,基于深度学习神经网络(DNN)算法的智能模型用于预测热塑性光纤束的入口表面处的温度。

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