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Performance of water/steam injected gas turbine power plants consisting of standard gas turbines and turbo expanders

机译:由标准燃气轮机和涡轮膨胀机组成的注水/注汽燃气轮机发电厂的性能

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摘要

The present study was done to investigate the performance differences in terms of thermal efficiency and specific power output of: 1. combined cycle power plants with integration of low temperature regenerative heat, standard gas turbines operated in wet cycle mode, turbo expanders and steam turbines (here: alternatives) 2. combined cycle power plants with integration of low temperature regenerative heat, wet cycle adjusted gas turbines and steam turbines (here: basic power plants or basic cycles) 3. standard combined cycles. The term 'adjusted' means that the blading of either the compressor or the turbine of a standard gas turbine was modified to accommodate the mass flow difference between the two. The analysis shows that in terms of thermal efficiency the alternatives are equal to or better by about 5%-points than the basic power plants. On the other hand, the corresponding specific outputs are lower by about 25 to 30%. But the gas turbines of the alternatives are the existing standard designs (see above) and, therefore, less expensive. Comparing the alternatives with the standard combined cycles, it is observed that the alternatives have a thermal efficiency advantage of up to 20%-points and a specific output advantage of up to 50%. Both of them are due to the integration of low temperature regenerative heat by injection of hot water into the alternative cycles and the definition of the thermal efficiency as based on the fuel burnt.
机译:本研究旨在研究以下方面在热效率和比功率输出方面的性能差异:1.结合了低温再生热的联合循环发电厂,湿循环模式下运行的标准燃气轮机,涡轮膨胀机和蒸汽轮机(这里:替代品)2.结合了低温再生热的联合循环发电厂,湿循环调节式燃气轮机和蒸汽轮机(此处:基本发电厂或基本循环)3.标准联合循环。术语“已调节”是指对标准燃气轮机的压缩机或涡轮的叶片进行了修改,以适应两者之间的质量流量差。分析表明,就热效率而言,替代方案等于或优于基本电站约5%。另一方面,相应的特定输出降低约25%至30%。但是替代方案的燃气轮机是现有的标准设计(请参见上文),因此价格较低。将替代方案与标准联合循环进行比较,可以发现替代方案具有高达20%点的热效率优势和高达50%的特定输出优势。两者均归因于通过将热水注入替代循环中而产生的低温再生热,以及基于燃烧燃料的热效率的定义。

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