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Comparative Thermodynamic Analysis on Design Performance Characteristics of Solid Oxide Fuel Cell/Gas Turbine Hybrid Power Systems

机译:固体氧化物燃料电池/燃气轮机混合动力系统设计性能特征的比较热力学分析

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摘要

This paper presents analysis results for the hybrid power system combining a solid oxide fuel cell and a gas turbine. Two system layouts, with the major difference being the operating pressure of the fuel cell, were considered and their thermodynamic design performances were compared. Critical temperature parameters affecting the design performances of the hybrid systems were considered as constraints for the system design. In addition to energy analysis, exergy analysis has been adopted to examine the performance differences depending on system layouts and design conditions. Under a relaxed temperature constraint on the cell, the ambient pressure system exhibits relatively larger power capacity but requires both higher cell temperature and temperature rise at the cell for a given gas turbine design condition. The pressurized system utilizes the high temperature gas from the fuel cell more effectively than the ambient pressure system, and thus exhibits better efficiency. Under a restricted temperature constraint on the cell, the efficiency advantage of the pressurized system becomes manifested.
机译:本文介绍了结合了固体氧化物燃料电池和燃气轮机的混合动力系统的分析结果。考虑了两个系统布局,主要区别在于燃料电池的工作压力,并比较了它们的热力学设计性能。影响混合系统设计性能的关键温度参数被视为系统设计的约束。除能量分析外,还根据系统布局和设计条件采用了能值分析来检查性能差异。在对电池单元的温度约束放松的情况下,环境压力系统显示出相对较大的功率容量,但是对于给定的燃气轮机设计条件,需要较高的电池单元温度和电池单元处的温度升高。加压系统比环境压力系统更有效地利用了来自燃料电池的高温气体,因此显示出更高的效率。在电池上受限制的温度约束下,增压系统的效率优势变得明显。

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