首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical Analysis of Fatigue Life Improvement by Optimizing the Startup Phase for a 1000 MW Supercritical Steam Turbine Inner Casing
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Numerical Analysis of Fatigue Life Improvement by Optimizing the Startup Phase for a 1000 MW Supercritical Steam Turbine Inner Casing

机译:优化1000 MW超临界汽轮机内套启动阶段改善疲劳寿命的数值分析。

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摘要

The fatigue behavior of a specific inner casing of a 1000 MW supercritical steam turbine was investigated during a complete startup phase. The Ramberg-Osgood model and Manson-Coffin strain-life law were used to describe the stress-strain behavior and calculate the damage. The temperature variation during the startup phase revealed that the startup phase could be divided into a warming-up phase, transition phase, and elevated temperature phase. The thermal stress that dominated in the inner casing could also be divided into the same three phases. The damage caused by the alternating stress during the warming-up phase was around 70% of the total damage. The remaining 30% of the damage was contributed fry the transition and elevated temperature phases. The fatigue life was improved by shortening the warming-up phase and extending the elevated temperature phase. The damage was reduced by approximately 20%.
机译:在整个启动阶段,研究了1000 MW超临界蒸汽轮机的特定内壳的疲劳行为。使用Ramberg-Osgood模型和Manson-Coffin应变-寿命定律来描述应力-应变行为并计算损伤。启动阶段的温度变化表明启动阶段可以分为预热阶段,过渡阶段和高温阶段。在内壳中占主导地位的热应力也可以分为相同的三个阶段。在预热阶段,由交替应力引起的损坏约为总损坏的70%。其余30%的损坏是在过渡和高温阶段造成的。通过缩短预热阶段并延长高温阶段,可以改善疲劳寿命。伤害减少了大约20%。

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