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A novel application of concentrated solar thermal energy in foundries

机译:集中式太阳能热能在铸造厂中的新应用

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Scrap preheating in foundries is a technology that saves melting energy, leading to economic and environmental benefits. The proposed method in this paper utilizes solar thermal energy for preheating scrap, effected through a parabolic trough concentrator that focuses sunlight onto a receiver which carries the metallic scrap. Scraps of various thicknesses were placed on the receiver to study the heat absorption by them. Experimental results revealed the pattern with which heat is gained by the scrap, the efficiency of the process and how it is affected as the scrap gains heat. The inferences from them gave practical guidelines on handling scraps for best possible energy savings. Based on the experiments conducted, preheat of up to 160 degrees C and a maximum efficiency of 70 % and a minimum efficiency of 40 % could be achieved across the time elapsed and heat gained by the scrap. Calculations show that this technology has the potential to save around 8 % of the energy consumption in foundries. Cumulative benefits are very encouraging: 180.45 million kWh of energy savings and 203,905 t of carbon emissions cut per year across the globe. This research reveals immense scope for this technology to be adopted by foundries throughout the world.
机译:铸造厂的废料预热是一种节省熔化能量的技术,可带来经济和环境效益。本文中提出的方法利用太阳能将废料预热,这是通过抛物槽式聚光器实现的,该聚光器将阳光聚焦到承载金属废料的接收器上。将各种厚度的废料放在接收器上,以研究它们的吸热率。实验结果揭示了废料获取热量的方式,过程的效率以及废料获取热量的方式如何影响废料。他们的推论给出了处理废料以最大程度地节省能源的实用指南。根据进行的实验,可以在整个时间段内达到最高160摄氏度的预热,最高效率为70%,最低效率为40%,并且废料会吸收热量。计算表明,这项技术有可能节省铸造厂约8%的能耗。累积收益非常令人鼓舞:全球每年节省18045万千瓦时的能源,减少203905吨的碳排放。这项研究揭示了这项技术被全世界的铸造厂采用的巨大范围。

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