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Degradation Effects on Combined Cycle Power Plant Performance―Part Ⅰ: Gas Turbine Cycle Component Degradation Effects

机译:退化对联合循环电厂性能的影响-第一部分:燃气轮机循环成分的退化效应

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This paper describes the effects of degradation of the main gas path components of the gas turbine topping cycle on the combined cycle gas turbine (CCGT) plant performance. First, the component degradation effects on the gas turbine performance as an independent unit are examined. It is then shown how this degradation is reflected on a steam turbine plant of the CCGT and on the complete combined cycle plant. TURBOMATCH, the gas turbine performance code of Cranfield University, was used to predict the effects of degraded gas path components of the gas turbine have on its performance as a whole plant. To simulate the steam (bottoming) cycle, another Fortran code was developed. Both codes were used together to form a complete software system that can predict the CCGT plant design point, off-design, and deteriorated (due to component degradation) performances. The results show that the overall output is very sensitive to many types of degradation, especially in the turbine of the gas turbine. Also shown is the effect on gas turbine exhaust conditions and how this affects the steam cycle.
机译:本文介绍了燃气轮机顶部循环的主要气体路径组件的退化对联合循环燃气轮机(CCGT)设备性能的影响。首先,研究了部件退化对作为独立单元的燃气轮机性能的影响。然后显示了这种退化如何在CCGT的汽轮机装置和整个联合循环装置上反映出来。克兰菲尔德大学的燃气轮机性能代码TURBOMATCH用于预测燃气轮机性能下降的燃气路径部件对其整个工厂的性能的影响。为了模拟蒸汽(底部)循环,开发了另一个Fortran代码。这两个代码一起使用,形成了一个完整的软件系统,可以预测CCGT工厂的设计要点,非设计和性能下降(由于组件退化)。结果表明,总输出对许多类型的退化非常敏感,尤其是在燃气轮机的涡轮中。还显示了对燃气轮机排气条件的影响以及这如何影响蒸汽循环。

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