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燃气轮机电厂热电回收系统的性能优化与㶲分析

Performance Optimization and Exergy Analysis of Thermoelectric Heat Recovery System for Gas Turbine Power Plants.

作者信息

Alsaghir Ahmad M, Bahk Je-Hyeong

机构信息

Department of Mechanical and Materials Engineering, University of Cincinnati, Cincinnati, OH 45221, USA.

出版信息

Entropy (Basel). 2023 Nov 25;25(12):1583. doi: 10.3390/e25121583.

Abstract

Thermoelectric (TE) waste heat recovery has attracted significant attention over the past decades, owing to its direct heat-to-electricity conversion capability and reliable operation. However, methods for application-specific, system-level TE design have not been thoroughly investigated. This work provides detailed design optimization strategies and exergy analysis for TE waste heat recovery systems. To this end, we propose the use of TE system equipped on the exhaust of a gas turbine power plant for exhaust waste heat recovery and use it as a case study. A numerical tool has been developed to solve the coupled charge and heat current equations with temperature-dependent material properties and convective heat transfer at the interfaces with the exhaust gases at the hot side and with the ambient air at the heat sink side. Our calculations show that at the optimum design with 50% fill factor and 6 mm leg thickness made of state-of-the-art BiTe alloys, the proposed system can reach power output of 10.5 kW for the TE system attached on a 2 m-long, 0.5 × 0.5 m-area exhaust duct with system efficiency of 5% and material cost per power of 0.23 $/W. Our extensive exergy analysis reveals that only 1% of the exergy content of the exhaust gas is exploited in this heat recovery process and the exergy efficiency of the TE system can reach 8% with improvement potential of 85%.

摘要

在过去几十年中,热电(TE)废热回收因其直接的热电转换能力和可靠的运行而备受关注。然而,针对特定应用的系统级TE设计方法尚未得到充分研究。这项工作为TE废热回收系统提供了详细的设计优化策略和火用分析。为此,我们建议在燃气轮机发电厂的排气口安装TE系统,用于回收排气废热,并将其作为一个案例研究。我们开发了一种数值工具,用于求解耦合的电荷和热流方程,该方程考虑了与温度相关的材料特性以及在热侧与废气、在散热器侧与周围空气的界面处的对流换热。我们的计算表明,在采用50%填充因子和由最先进的BiTe合金制成的6毫米腿厚的最佳设计下,安装在2米长、0.5×0.5平方米面积排气管道上的TE系统可实现10.5千瓦的功率输出,系统效率为5%,每瓦功率的材料成本为0.23美元。我们广泛的火用分析表明,在这个热回收过程中,废气的火用含量仅被利用了1%,TE系统的火用效率可达到8%,还有85%的提升潜力。

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