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Solid oxide fuel cell architecture and system design for secure power on an unstable grid

机译:固体氧化物燃料电池架构和系统设计,可确保不稳定电网上的电力安全

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摘要

In a power grid with significant components of distributed generation and insufficient spinning reserve, the quality of delivered power may not meet the requirements of advanced manufacturing. A system design for power quality security which uses solid oxide fuel cell (SOFC) technology is described. Critical parameters for system performance are continuous supply voltage at the nominal voltage and frequency. The grid chosen for this study has significant voltage fluctuations and periodic voltage drops and surges, including total power loss. A supply of methane from a sewer sludge digester is scrubbed of CO_2 and used for continuous standby operation, with excess stored to enable 8 h operation of an uninterruptible power supply (UPS). The system employs a modular, thermally coupled, SOFC architecture that includes steam reforming of the methane fuel, a rectifier, power controls, and control system. Continuous operation of a 125 kW tubular SOFC stack maintains operating temperature and steam for fuel reforming in a secondary SOFC stack, by exhausting through it before a gas turbine expands the exhaust to supply the plant air and fuel compression. Modelling of the energy balance of the system demonstrates the standby and full power operating modes. The system is sized at 250 kW to supply secure power for a manufacturing facility.
机译:在具有分布式发电的重要组件且旋转储备不足的电网中,所输送的电能质量可能无法满足先进制造的要求。描述了一种使用固态氧化物燃料电池(SOFC)技术的电能质量安全系统设计。系统性能的关键参数是标称电压和频率下的连续电源电压。本研究选择的电网具有明显的电压波动以及周期性的电压降和电涌,包括总功率损耗。将来自下水道污泥消化器的甲烷供应中的CO_2洗涤,并用于连续待机操作,多余的存储以实现8小时不间断电源(UPS)的运行。该系统采用模块化的热耦合SOFC架构,其中包括甲烷燃料的蒸汽重整,整流器,电源控制和控制系统。 125 kW管状SOFC烟囱的连续运行通过在燃气轮机膨胀排气以提供工厂空气和燃料压缩之前通过排气来维持次级SOFC烟囱中燃料重整的工作温度和蒸汽。系统能量平衡的建模演示了待机和全功率运行模式。该系统的大小为250 kW,可为制造工厂提供安全的电源。

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