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TECHNO-ECONOMIC OPTIMAL DESIGN AND APPLICATION OF SOFC SYSTEMS FOR RESIDENTIAL MICRO-CHP APPLICATIONS IN THE U.S

机译:美国住宅微CHP应用SOFC系统的技术经济优化设计与应用

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摘要

A techno-economic optimization study investigating optimal design and operating strategies of solid oxide fuel cell (SOFC) micro-combined heat and power (CHP) systems for application in U.S. residential dwellings is carried out through modeling and simulation of various anode-supported planar SOFC-based system configurations. Five different SOFC system designs operating from either methane or hydrogen fuels are evaluated in terms of their energetic and economic performance and their overall suitability for meeting residential thermal-to-electric ratios. Life cycle cost models are developed and employed to generate optimization objective functions which are utilized to explore the sensitivity of the life cycle costs to various system design and economic parameters and to select optimal system configurations and operating parameters for eventual application in single-family, detached residential homes in the U.S. The study compares the results against a baseline SOFC-CHP system that employs primarily external steam reforming of methane. The results of the study indicate that system configurations and operating parameter selections that enable minimum life cycle cost while achieving maximum CHP system efficiency are possible. Life cycle cost reductions of over 30% and CHP efficiency improvements of nearly 20% from the baseline system are detailed.
机译:通过对各种阳极支撑的平面SOFC进行建模和仿真,进行了一项技术经济优化研究,研究了固体氧化物燃料电池(SOFC)微型热电联产(CHP)系统在美国住宅中的最佳设计和运行策略。基于系统的配置。评估了五种不同的以甲烷或氢燃料为燃料的SOFC系统设计,它们的能量和经济性能以及满足居民热电比的总体适用性均得到了评估。开发并使用生命周期成本模型来生成优化目标函数,这些函数可用于探索生命周期成本对各种系统设计和经济参数的敏感性,并选择最佳的系统配置和运行参数,以最终应用于单户独立家庭美国的居民住宅该研究将结果与基线SOFC-CHP系统进行了比较,该系统主要采用甲烷的外部蒸汽重整。研究结果表明,在实现最大CHP系统效率的同时实现最小生命周期成本的系统配置和操作参数选择是可能的。与基准系统相比,生命周期成本降低了30%以上,CHP效率提高了近20%。

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