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首页> 外文期刊>Journal of power sources >Evaluation of system configurations for solid oxide fuel cell-based micro-combined heat and power generators in residential applications
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Evaluation of system configurations for solid oxide fuel cell-based micro-combined heat and power generators in residential applications

机译:住宅应用中基于固体氧化物燃料电池的微型热电联产发电机的系统配置评估

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The evaluation of solid oxide fuel cell (SOFC) combined heat and power (CHP) system configurations for application in residential dwellings is explored through modeling and simulation of cell-stacks including the balance-of-plant equipment. Five different SOFC system designs are evaluated in terms of their energetic performance and suitability for meeting residential thermal-to-electric ratios. Effective system concepts and key performance parameters are identified. The SOFC stack performance is based on anode-supported planar geometry. A cell model is scaled-up to predict voltage-current performance characteristics when served with either hydrogen or methane fuel gas sources. System comparisons for both fuel types are made in terms of first and second law efficiencies. The results indicate that maximum efficiency is achieved when cathode and anode gas recirculation is used along with internal reforming of methane. System electric efficiencies of 40 percent HHV (45 percent LHV) and combined heat and power efficiencies of 79 percent (88 percent LHV) are described. The amount of heat loss from small-scale SOFC systems is included in the analyses and can have an adverse impact on CHP efficiency. Performance comparisons of hydrogen-fueled versus methane-fueled SOFC systems are also given. The comparisons indicate that hydrogen-based SOFC systems do not offer efficiency performance advantages over methane-fueled SOFC systems. Sensitivity of this result to fuel cell operating parameter selection demonstrates that the magnitude of the efficiency advantage of methane-fueled SOFC systems over hydrogen-fueled ones can be as high as 6 percent.
机译:通过对包括工厂平衡设备在内的电池堆进行建模和仿真,探索了用于住宅的固体氧化物燃料电池(SOFC)热电联产(CHP)系统配置的评估。评估了五种不同的SOFC系统设计的能量性能和满足住宅热电比的适用性。确定有效的系统概念和关键性能参数。 SOFC堆的性能基于阳极支撑的平面几何形状。当与氢气或甲烷燃料气源一起使用时,电池模型会按比例放大以预测电压-电流性能特征。两种燃料类型的系统比较都是根据第一定律和第二定律效率进行的。结果表明,当使用阴极和阳极气体再循环以及甲烷内部重整时,可实现最大效率。描述了40%HHV(45%LHV)的系统电效率和79%(88%LHV)的综合热电效率。分析中包括了小型SOFC系统产生的热量损失,可能会对CHP效率产生不利影响。还给出了氢燃料与SOFC系统的性能比较。比较表明,基于氢的SOFC系统没有提供比以甲烷为燃料的SOFC系统更高的效率性能优势。该结果对燃料电池操作参数选择的敏感性表明,甲烷燃料的SOFC系统相对于氢燃料的系统而言,效率优势的幅度可高达6%。

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