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Thermodynamic performance assessment of an indirect intercooled reheat regenerative gas turbine cycle with inlet air cooling and evaporative aftercooling of the compressor discharge

机译:间接中间冷却再热再生燃气轮机循环的热力学性能评估,包括进气口冷却和压缩机排气的蒸发后冷

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摘要

This study provides a computational analysis to investigate the effects of cycle pressure ratio, turbine inlet temperature (TIT), and ambient relative humidity (φ) on the thermodynamic performance of an indirect intercooled reheat regenerative gas turbine cycle with indirect evaporative cooling of the inlet air and evaporative aftercooling of the compressor discharge. Combined first and second-law analysis indicates that the exergy destruction in various components of gas turbine cycles is significantly affected by compressor pressure ratio and turbine inlet temperature, and is not at all affected by ambient relative humidity. It also indicates that the maximum exergy is destroyed in the combustion chamber; which represents over 60% of the total exergy destruction in the overall system. The net work output, first-law efficiency, and the second-law efficiency of the cycle significantly varies with the change in the pressure ratio, turbine inlet temperature and ambient relative humidity. Results clearly shows that performance evaluation based on first-law analysis alone is not adequate, and hence more meaningful evaluation must include second-law analysis. Decision makers should find the methodology contained in this paper useful in the comparison and selection of gas turbine systems.
机译:这项研究提供了计算分析,以研究循环压力比,涡轮机入口温度(TIT)和环境相对湿度(φ)对间接中冷再热再生燃气涡轮机循环与入口空气的间接蒸发冷却的热力学性能的影响。以及压缩机出口的蒸发后冷。结合的第一定律和第二定律分析表明,燃气轮机循环各个组成部分的(火用)破坏受压缩机压力比和涡轮进口温度的影响很大,而不受环境相对湿度的影响。这也表明在燃烧室中最大的火用被破坏了。占整个系统总火用破坏的60%以上。循环的净功输出,第一定律效率和第二定律效率随压力比,涡轮机入口温度和环境相对湿度的变化而显着变化。结果清楚地表明,仅基于第一定律分析的绩效评估是不够的,因此,更有意义的评估必须包括第二定律分析。决策者应该发现本文包含的方法可用于比较和选择燃气轮机系统。

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