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首页> 外文期刊>International energy journal >Exergy Analysis and Optimization of Gasifier-Solid Oxide Fuel Cell-Gas Turbine Hybrid System
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Exergy Analysis and Optimization of Gasifier-Solid Oxide Fuel Cell-Gas Turbine Hybrid System

机译:气化炉-固体氧化物燃料电池-燃气轮机混合系统的火用分析与优化

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摘要

In this paper, different systems based on integrated gasifier-solid oxide fuel cells (SOFC)-gas turbine hybrid system are modelled to carry out their thermodynamic analysis. The thermodynamic flowsheet software Cycle-Tempo is used to analyze the performance of the modelled systems. Influence of fuels viz. coal and cow manure on the performance of the integrated hybrid system is studied. It is observed that the efficiency of the system changes with change in fuel. The electrical efficiency is found to be 40.2% when coal was used as fuel, and the efficiency increased to 48.2% when coal was replaced by cow manure as fuel. Exergy analysis of the integrated hybrid base case system is performed to find out the components responsible for the poor efficiency of the system. Based on the exergy analysis of the base case system, a new optimized system was designed with the critical operating parameters remaining the same. The system efficiency increased from 40.2% to 49% with coal as fuel and from 48.2% to 56.9% with cow manure as fuel in the optimized system. Exergy analysis of the optimized system depicts that there is a reduction in total relative exergy loss percentage when compared to the base case system.
机译:本文对基于气化炉-固体氧化物燃料电池(SOFC)-燃气轮机混合系统的不同系统进行了建模,以进行热力学分析。热力学流程图软件Cycle-Tempo用于分析建模系统的性能。燃料的影响,即。研究了煤和牛粪对混合杂交系统性能的影响。观察到系统的效率随着燃料的变化而变化。当使用煤作为燃料时,发现电效率为40.2%,而当用牛粪作为燃料代替煤时,效率提高到48.2%。进行了综合混合基础案例系统的火用分析,以找出造成系统效率低下的因素。基于基本案例系统的火用分析,设计了一个新的优化系统,其关键操作参数保持不变。在优化系统中,以煤为燃料的系统效率从40.2%提高到49%,以牛粪为燃料的系统效率从48.2%提高到56.9%。优化系统的火用分析表明,与基本案例系统相比,总相对火用损失百分比有所降低。

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