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Methodology for sizing the solar field for parabolic trough technology with thermal storage and hybridization

机译:通过蓄热和混合的抛物槽技术确定太阳场大小的方法

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A detailed methodology to design the size of solar field for a parabolic trough plant is not explicitly available in open literature, particularly if thermal storage and hybridization are also considered, as most of the papers present a gross overview. This paper gives a procedure to determine the annual electricity generated for a parabolic trough based solar plant of a given rated capacity (1-50 MWe), at a chosen location & given hourly annual solar input, specified hours of thermal energy storage using a two-tank molten salt system and specified fraction of hybridization using natural gas. In this methodology losses due to shut down or cloud cover are also covered. The size of the solar field is optimized for the maximum annual solar to electric conversion efficiency using the concept of solar multiple (ratio of actual aperture area to the reference aperture area needed to get rated power output at maximum solar input). This procedure is validated with the existing parabolic trough plants (Solar Energy Generating Systems VI and Solana Generating Station) and it was found that the annual electrical energy generated by the plant matches reasonably well.
机译:在公开文献中没有明确地提供用于设计抛物线槽式植物的太阳能场大小的详细方法,特别是如果还考虑了储热和杂交的情况,因为大多数论文对此进行了概述。本文给出了确定给定额定容量(1-50 MWe)的抛物槽式太阳能发电厂在选定位置和每小时给出的每小时太阳能输入,指定的两个小时指定的热能存储小时发电量的程序。 -坦克熔融盐系统和使用天然气的特定混合比例。在这种方法中,还涵盖了因关闭或云层覆盖而造成的损失。利用太阳能倍数的概念(实际孔径面积与参考孔径面积的比值,以获得最大太阳能输入时的额定功率输出),可将太阳能场的大小优化为最大的年度太阳能到电转换效率。现有的抛物线槽式设备(太阳能发电系统VI和Solana发电站)对此程序进行了验证,发现该工厂产生的年电能相当匹配。

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