Study on heating performances of steam generator for solid oxide fuel cell using waste heat from solid particles |
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Affiliation: | 1. Laboratório de Ciências Químicas, Universidade Estadual do Norte Fluminense, Campos dos Goytacazes/RJ, 28013-602, Brazil;2. P&D NanoBusiness Informação e Inovação, Duque de Caxias/RJ, 25250-020, Brazil;3. Laboratório de Biologia Celular e Tecidual, Universidade Estadual do Norte Fluminense, Campos dos Goytacazes/RJ, 28013-602, Brazil;1. Faculty of Chemical Engineering, Huaiyin Institute of Technology, Huaian 223003, China;2. Key laboratory for traffic and transportation security of Jiangsu Province, Huaiyin Institute of Technology, Huaian 223003, China |
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Abstract: | This paper reports the heating performances of steam generator for solid oxide fuel cell using waste heat from solid particles. The model of trapezoid-fin-tube heat exchanger was set up by using FLUENT 14.0. The model has been used to investigate the effects of fin tip width (2 mm–4 mm) and fin height (34 mm–46 mm). The fin surface temperature, the particle temperature, the fin total heat flux, the heat recovery efficiency and the heat transfer coefficient were studied. The heating performance of steam generator is improved when the trapezoid-fins are placed on heat transfer tubes, which is conducive to increase the power generation efficiency of solid oxide fuel cell. When the fin height increases from 34 mm to 46 mm, the average temperature of calcined petroleum coke decrease from 414 K to 376 K, the maximum temperature decrease from 498 K to 442 K, the average heat transfer coefficient of internal and external heat exchanger increase 12.4% and 12.7% respectively, the heat recovery efficiency increases 4.3%. When the fin tip width increases from 2 mm to 3 mm, the average temperature reduce 6.7 K and the maximum temperature decrease 7.3 K, the average heat transfer coefficient of internal and external heat exchanger increase 3.8% and 3.7% respectively, the heat recovery efficiency increases 0.88%. |
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Keywords: | Solid oxide fuel cell Solid particle Waste heat Heat transfer |
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