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首页> 外文期刊>Journal of The institution of engineers (India), Series C >Effect of Gas/Steam Turbine Inlet Temperatures on Combined Cycle Having Air Transpiration Cooled Gas Turbine
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Effect of Gas/Steam Turbine Inlet Temperatures on Combined Cycle Having Air Transpiration Cooled Gas Turbine

机译:气/汽轮机进口温度对空蒸冷却燃气轮机联合循环的影响

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摘要

Worldwide efforts are being made for further improving the gas/steam combined cycle performance by having better blade cooling technology in topping cycle and enhanced heat recovery in bottoming cycle. The scope of improvement is possible through turbines having higher turbine inlet temperatures (TITs) of both gas turbine and steam turbine. Literature review shows that a combined cycle with transpiration cooled gas turbine has not been analyzed with varying gas/steam TITs. In view of above the present study has been undertaken for thermodynamic study of gas/steam combined cycle with respect to variation in TIT in both topping and bottoming cycles, for air transpiration cooled gas turbine. The performance of combined cycle with dual pressure heat recovery steam generator has been evaluated for different cycle pressure ratios (CPRs) varying from 11 to 23 and the selection diagrams presented for TIT varying from 1,600 to 1,900 K. Both the cycle efficiency and specific work increase with TIT for each pressure ratio. For each TIT there exists an optimum pressure ratio for cycle efficiency and specific work. For the CPR of 23 the best cycle performance is seen at a TIT of 1,900 K for maximum steam temperature of 570℃, which gives the cycle efficiency of 60.9% with net specific work of 909 kJ/kg.
机译:通过在顶部循环中使用更好的叶片冷却技术并在底部循环中增强热量回收,全球正在努力进一步改善燃气/蒸汽联合循环性能。通过燃气轮机和蒸汽轮机均具有更高的涡轮机入口温度(TIT)的涡轮机,改进范围是可能的。文献综述表明,采用不同的燃气/蒸汽TIT不能对带有蒸发冷却燃气轮机的联合循环进行分析。鉴于以上,针对空气蒸腾冷却的燃气轮机,已经进行了关于气/蒸汽联合循环的热力学研究,该热力学研究是关于顶部和底部循环中的TIT变化的。已评估了双压热回收蒸汽发生器的联合循环性能,其循环压力比(CPR)从11到23变化,而TIT的选择图从1600到1900 K变化。循环效率和特定功均增加每个压力比都带有TIT。对于每个TIT,都存在一个最佳的压力比,以提高循环效率和具体工作。对于23的CPR,在最高温度为570℃的TIT为1,900 K时,可以看到最佳循环性能,循环效率为60.9%,净比功为909 kJ / kg。

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