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Thermodynamic study of different configurations of gas-steam combined cycles employing intercooling and different means of cooling in topping cycle

机译:采用中间冷却和不同冷却手段的气蒸汽组合循环不同配置的热力学研究

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摘要

Various options for improving the performance of gas/steam combined cycle, the performance enhancement can be achieved by increasing the turbine inlet temperature and/or increasing the cycle pressure ratio along with intercooling for reducing compression work and reheating for increasing the expansion work. The present paper analyses eight novel configurations of the intercooled gas turbine based combined cycles having the gas turbine blade cooled using closed loop cooling scheme. Combined cycle configurations differ in respect to cooling medium being steam or ammonia-water, intercooling, reheating, single/dual/triple pressure heat recovery steam generator, steam turbine, and ammonia water turbine. The comparative evaluation of combined cycle arrangements is based on thermodynamic modeling using first law and the second law of thermodynamics for the inlet temperature to turbine of 2000 K and ambient temperature of 303 K. Study aims at furnishing results for understanding the implications of modifications on the cycle performance. The results show that maximum 1142 kJ/kg of work is obtained for ammonia concentration of 0.6 while the maximum cycle efficiency of 53.87% and second law efficiency of 58.46% is obtained for ammonia concentration of 0.7 at cycle pressure ratio of 40 for combined cycle with triple pressure heat recovery vapor generator having ammonia-water cycle at high pressure& intermediate pressure and Rankine cycle at low pressure.
机译:通过增加涡轮机入口温度和/或增加循环压力比以及中间冷却以减少压缩工作并再加热以增加膨胀工作来实现性能增强的各种选择。本文分析了具有使用闭环冷却方案冷却的燃气涡轮机叶片的中间冷却燃气涡轮机的组合循环的八种新配置。综合循环配置在冷却介质中不同于蒸汽或氨水,中间冷却,再加工,单/双/三重/三重压力热回收蒸汽发生器,汽轮机和氨水涡轮机。联合循环装置的比较评价基于使用第一法的热力学建模和用于200 k的入口温度的热力学的第二律法和303k的环境温度。研究旨在为理解修改的含义提供的结果。循环性能。结果表明,对于氨浓度为0.6,获得最大1142 kJ / kg的工作,而53.87%的最大循环效率为58.87%,第二律效率为58.46%,用于组合循环的40次循环压力比为0.7的氨浓度为0.7三重压力热回收蒸汽发生器在高压和中间压力下具有氨水循环和低压下的朗肯循环。

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