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Solid oxide fuel cell application in district cooling

机译:固体氧化物燃料电池在区域供冷中的应用

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This paper presents analysis of the performance of a combined cooling and power (CCP) system for district cooling. The cogeneration system is designed to provide cooling for a low-rise residential district of 27,300 RT (96 MWc). A solid oxide fuel cell (SOFC) generates electric power to operate chillers, and the exhaust fuel and heat from the SOFC run gas turbines and absorption chillers. Thermal energy storage is utilized to reduce system capacity. Part-load operation strategies target maximizing energy efficiency. The operation of the system is compared through an hourly simulation to that of packaged air-conditioning units typically used to cool homes. The CCP system with the district cooling arrangement improves the cooling-to-fuel efficiency by 346%. The peak power requirement is reduced by 57% (24 MW) and the total fuel energy is reduced by 54% (750 TJ y~(-1)). The system cuts annual carbon dioxide emissions to less than half and reduces other harmful emissions. A cost analysis of the system components and operation resulted in a 53% reduction in the cost per ton-hour of cooling over traditional systems.
机译:本文介绍了用于区域制冷的制冷和电力联合(CCP)系统的性能分析。热电联产系统旨在为27,300 RT(96 MWc)的低层住宅区提供制冷。固体氧化物燃料电池(SOFC)产生电力以运行冷却器,而SOFC产生的废气和热量则驱动燃气轮机和吸收式冷却器。利用热能存储来减少系统容量。部分负荷运行策略旨在最大程度地提高能源效率。通过每小时模拟将系统的运行与通常用于给房屋供冷的成套空调单元的运行进行比较。具有区域冷却装置的CCP系统将冷却燃料效率提高了346%。峰值功率需求减少了57%(24 MW),总燃料能量减少了54%(750 TJ y〜(-1))。该系统可将每年的二氧化碳排放量减少到一半以下,并减少其他有害排放量。通过对系统组件和操作进行成本分析,与传统系统相比,每吨小时的冷却成本降低了53%。

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