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Analysis Strategies for Tubular Solid Oxide Fuel Cell Based Hybrid Systems

机译:基于管状固体氧化物燃料电池的混合系统分析策略

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摘要

The emergence of fuel cell systems and hybrid fuel cell systems requires the evolution of analysis strategies for evaluating thermodynamic performance and directing design and development. A description and application of the recently developed tool for analyzing tubular SOFC based systems is presented. The capabilities of this tool include an analytical model for the tubular SOFC derived from first principles and the secondary equipment required to analyze hybrid power plants. Examples of such secondary equipment are gas turbine, reformer, partial oxidation reactor, shift reactor, humidifier, steam turbines, compressor, gas expander, heat exchanger, and pump. A "controller" is included which is essential for modeling systems to automatically iterate in order to meet the desired process or system design criteria. Another important capability that is included is to be able to arrange the various components or modules as defined by the user in order to configure different hybrid systems. Analysis of the hybrid cycle as originally proposed by Westinghouse (SureCell TM) indicates that the thermal efficiency of the cycle is quite insensitive to the pressure ratio, increasing from 65.5 percent to 66.6 percent on a lower calorific value of the fuel as the pressure ratio decreases from 15 to 6.5.
机译:燃料电池系统和混合燃料电池系统的出现需要改进分析策略,以评估热力学性能并指导设计和开发。介绍了最近开发的用于分析基于管状SOFC的体系的工具的描述和应用。该工具的功能包括从第一性原理得出的管状SOFC的分析模型以及分析混合发电厂所需的二次设备。这种二次设备的例子有燃气轮机、重整器、部分氧化反应器、换挡反应器、加湿器、蒸汽轮机、压缩机、气体膨胀器、热交换器和泵。包括一个“控制器”,这对于建模系统自动迭代以满足所需的过程或系统设计标准至关重要。包含的另一个重要功能是能够按照用户定义排列各种组件或模块,以便配置不同的混合系统。西屋公司(SureCell TM)最初提出的混合循环分析表明,循环的热效率对压力比非常不敏感,当压力比从15降低到6.5时,燃料的热值从65.5%增加到66.6%。

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