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Using polymer electrolyte membrane fuel cells in a hybrid surface ship propulsion plant to increase fuel efficiency

机译:在混合动力表面船舶推进装置中使用聚合物电解质膜燃料电池来提高燃料效率

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摘要

An increasingly mobile US Navy surface fleet and oil price uncertainty contrast with the Navy's desire to lower the amount of money spent purchasing fuel. Operational restrictions limiting fuel use are temporary and cannot be dependably relied upon. Long term technical research toward improving fuel efficiency is ongoing and includes advanced gas turbines and integrated electric propulsion plants, but these will not be implemented fleet wide in the near future. The focus of this research is to determine if a hybrid fuel cell and gas turbine propulsion plant outweigh the potential ship design disadvantages of physically implementing the system. Based on the potential fuel savings available, the impact on surface ship architecture will be determined by modeling the hybrid fuel cell powered ship and conducting a side by side comparison to one traditionally powered. Another concern that this solution addresses is the trend in the commercial shipping industry of designing more cleanly running propulsion plants.
机译:美国海军越来越多的机动水面舰队和油价的不确定性与海军减少购买燃料所花费金钱的愿望形成了鲜明的对比。限制燃料使用的操作限制是暂时的,不能可靠地依靠。正在进行提高燃油效率的长期技术研究,其中包括先进的燃气轮机和集成的电力推进装置,但是在不久的将来不会在舰队范围内实施。这项研究的重点是确定混合燃料电池和燃气轮机推进装置是否超过了实际实施该系统的潜在船舶设计弊端。基于可用的潜在燃料节省,将通过对混合燃料电池动力船建模并与传统动力船进行并排比较来确定对水面舰船结构的影响。该解决方案解决的另一个问题是商业航运业中设计更清洁运行的推进装置的趋势。

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