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Thermodynamic and Energy Study of a Regenerator in Gas Turbine Cycle and Optimization of Performances

机译:燃气轮机回热器的热力学和能量研究及性能优化

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摘要

In this paper, thermodynamic study of simple and regenerative gas turbine cycles is exhibited. Firstly, thermodynamic models for both cycles are defined; thermal efficiencies of both cycles are determined, the overall heat transfer coefficient through the heat exchanger is calculated in order to determinate its performances and parametric study is carried out to investigate the effects of compressor inlet temperature, turbine inlet temperature and compressor pressure ratio on the parameters that measure cycles' performance. Subsequently, numerical optimization is established through EES software to determinate operating conditions. The results of parametric study have shown a significant impact of operating parameters on the performance of the cycle. According to this study, the regeneration technique improves the thermal efficiency by 10%. The studied regenerator has an important effectiveness (≈ 82%) which improves the heat transfer exchange; also a high compressor pressure ratio and an important combustion temperature can increase thermal efficiency.
机译:本文展示了简单和可再生燃气轮机循环的热力学研究。首先,定义两个循环的热力学模型。确定两个循环的热效率,计算通过热交换器的总传热系数,以确定其性能,并进行参数研究,以研究压缩机入口温度,涡轮机入口温度和压缩机压力比对参数的影响衡量周期绩​​效的指标。随后,通过EES软件建立数值优化来确定运行条件。参数研究的结果表明,运行参数对循环性能有重大影响。根据这项研究,再生技术将热效率提高了10%。所研究的蓄热室具有重要的功效(≈82%),可改善热交换。高的压缩机压力比和重要的燃烧温度也可以提高热效率。

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