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Heat recovery options for onboard fuel cell systems

机译:车载燃料电池系统的热回收选项

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Solid oxide fuel cell fuelled by methanol is an attractive option to limit the environmental impact of the marine sector. In this publication, a study on heat-recovery has been made for a 250 kW SOFC atmospheric system fuelled by methano!, to satisfy the auxiliary demand onboard of a commercial vessel. Feasible heat-recovery systems were investigated, taking into account efficiency, costs, and space requirements. The heat-recovery possibilities taken into account are electricity production using an Organic Rankine Cycle (ORC), steam/hot water production, air-conditioning obtained using an Absorption Chiller, and demineralised water recovery. The software WTEMP, developed by the TPG (Ther-mochemical Power Group) of the University of Genoa, was used for the analysis; models of bottoming cycle, desalination unit, and absorption chiller were developed for this work. The analysis has compared these different solutions to the conventional onboard systems.
机译:用甲醇作为燃料的固体氧化物燃料电池是限制海洋领域对环境的影响的有吸引力的选择。在该出版物中,已经对以甲醇为燃料的250 kW SOFC大气系统进行了热回收研究,以满足商用船的辅助需求。考虑到效率,成本和空间要求,对可行的热回收系统进行了研究。考虑的热回收可能性包括:使用有机朗肯循环(ORC)进行发电,蒸汽/热水生产,使用吸收式制冷机进行的空调以及软化水回收。分析使用了热那亚大学TPG(热化学动力组)开发的软件WTEMP。为此工作开发了底部循环,脱盐装置和吸收式冷却器的模型。分析已将这些不同的解决方案与常规车载系统进行了比较。

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