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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Thermoeconomic Optimization of a Solid Oxide Fuel Cell and Proton Exchange Membrane Fuel Cell Hybrid Power System
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Thermoeconomic Optimization of a Solid Oxide Fuel Cell and Proton Exchange Membrane Fuel Cell Hybrid Power System

机译:固体氧化物燃料电池与质子交换膜燃料电池混合动力系统的热经济学优化

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摘要

A hybrid system that combines a solid oxide fuel cell (SOFC) with a proton exchange membrane fuel cell (PEMFC) is presented in this paper. The SOFC stack acts as both an electricity producer and the fuel reformer for the PEMFC stack to generate additional power. A thermoeconomic model for the design optimization of a 220 kW SOFC-PEMFC hybrid system is developed in this work. Optimization of two objectives, i.e., the life cycle cost and the net electrical efficiency, are considered individually to find the optimum system configuration and component designs. Then, a multiparameter sensitivity analysis is performed to estimate the relative importance of the decision variables on the objectives. The optimization results indicate that the life cycle cost of the hybrid system is 3800-5,600 $/kW, and the maximum net electrical efficiency can reach around 63%, which is higher than an SOFC-only system, a reformer-PEMFC system, and an SOFC-gas turbine (GT) system with a similar output power. The sensitivity analysis shows that minimizing the size of the SOFC is most crucial to the system cost optimization. The hydrogen utilization factor in the SOFC is found to be sensitive to the net electrical efficiency.
机译:本文提出了一种混合系统,该系统将固体氧化物燃料电池(SOFC)与质子交换膜燃料电池(PEMFC)结合在一起。 SOFC堆既充当电力生产商,又充当PEMFC堆的燃料重整器,以产生额外的电力。在这项工作中,开发了用于设计优化220 kW SOFC-PEMFC混合系统的热经济模型。为了找到最佳的系统配置和组件设计,分别考虑了两个目标的优化,即生命周期成本和净电气效率。然后,执行多参数敏感性分析以估计决策变量对目标的相对重要性。优化结果表明,该混合系统的生命周期成本为3800-5,600 $ / kW,最大净电气效率可达到63%左右,高于仅使用SOFC的系统,重整器-PEMFC系统和具有类似输出功率的SOFC燃气轮机(GT)系统。敏感性分析表明,最小化SOFC的尺寸对于优化系统成本至关重要。发现SOFC中的氢利用率对净电效率敏感。

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