Performance of An Energy Production System Consisting of Solar Collector, Biogas Dry Reforming Reactor and Solid Oxide Fuel Cell

Fuels Pub Date : 2024-07-10 DOI:10.3390/fuels5030016
A. Nishimura, Ryotaro Sato, E. Hu
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Abstract

This paper aims to study the performance of solar collectors of various sizes under different weather conditions in different Japanese cities, i.e., Kofu City, Nagoya City and Yamagata City. The heat generated by the solar collector was used to conduct a biogas dry reforming reactor for producing H2 to feed a solid oxide fuel cell (SOFC). This study revealed that the output temperature of a solar collector Tfb in April and July was higher than that in January and October irrespective of city. The optimum length of the absorber (dx) of the collector was 4 m irrespective of city. It was clarified that the Tfb in Yamagata City in January and October, i.e., winter and autumn, is lower than that in Kofu City and especially Nagoya City, which is strongly influenced by the tendency of solar intensity (I), not the velocity of the surrounding air (ua). On the other hand, the Tfb is almost the same in April and July, i.e., spring and summer, irrespective of city. The amount of produced H2 via the biogas dry reforming reactor and the power generated by the SOFC using H2 in spring and summer were higher compared to the other seasons irrespective of city. This study revealed that the highest available household number per month was 4.7, according to the investigation in this study.
由太阳能集热器、沼气干转化反应器和固体氧化物燃料电池组成的能源生产系统的性能
本文旨在研究不同尺寸的太阳能集热器在日本不同城市(甲府市、名古屋市和山形市)不同天气条件下的性能。太阳能集热器产生的热量被用来进行沼气干重整反应,以产生 H2 供给固体氧化物燃料电池(SOFC)。这项研究表明,太阳能集热器的输出温度 Tfb 在四月和七月高于一月和十月,与城市无关。无论在哪个城市,集热器吸收器的最佳长度(dx)都是 4 米。结果表明,山形市 1 月和 10 月(即冬季和秋季)的 Tfb 低于甲府市,尤其是名古屋市,这主要受太阳强度(I)而非周围空气流速(ua)的影响。另一方面,4 月和 7 月,即春季和夏季,Tfb 几乎相同,与城市无关。在春季和夏季,通过沼气干重整反应器产生的 H2 量和 SOFC 利用 H2 产生的功率都高于其他季节,与城市无关。本研究显示,根据本研究的调查,每月最高可用户数为 4.7 户。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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