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An advanced solution to boost sun-to-electricity efficiency of parabolic dish

机译:增强抛物线型太阳能发电效率的先进解决方案

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This paper investigates the coupling of parabolic dish concentrator with air micro gas turbine engine (net power output equal to 32.9 kW(el)). With the aim of increasing the conversion efficiency of the incoming solar radiation, a high temperature system (up to 1100 degrees C) has been considered: this solution implies the adoption of a ceramic expander coupled with a high temperature indirectly-irradiated solar receiver. A flexible Matlab (R) suite has been developed for the plant sizing and for the part-load simulation; in addition, the model is able to handle general solar field configurations through the computation of reciprocal shading effect. The obtained yearly sun-to-electric efficiency (26.48%) reveals the energetic advantage over other CSP technologies that can mitigate the technological issues and consequently higher investment cost, related to high operating temperatures. The potential of a hybrid version of the dish is also discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了抛物面碟形浓缩器与空气微型燃气轮机发动机(净功率输出等于32.9 kW(el))的耦合。为了提高入射太阳辐射的转换效率,已经考虑了高温系统(最高1100摄氏度):此解决方案意味着采用陶瓷膨胀机和高温间接辐照太阳接收器。已经开发了一种灵活的Matlab(R)套件,用于工厂规模确定和部分负荷模拟。此外,该模型还可以通过计算相互的阴影效果来处理一般的太阳场配置。所获得的年均太阳电效率(26.48%)显示出与其他CSP技术相比的能源优势,可以缓解技术问题并因此降低与高温运行相关的投资成本。还讨论了该碟的混合版本的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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