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Numerical investigation on life improvement of low-cycle fatigue for an ultra-supercritical steam turbine rotor

机译:超超临界汽轮机转子低周疲劳寿命改善的数值研究

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In this paper, an axisymmetric rotor of a 1000-MW ultra-supercritical steam turbine was modeled with the commercial finite-element software ABAQUS with inlet parameters of 35 Mpa and 600A degrees C. The temperature and Mises stress distributions of the rotor during the start-up procedure were then analyzed. The fatigue damage was predicted by the strain-life-based Manson-Coffin equation and the Miner rule. The results demonstrated that the fatigue damage was mainly generated at the rotor surface. For the requirement of the half life time, the cyclic number almost reached 4000. Furthermore, optimization by extending the warm-up phase is proposed to eliminate strain fluctuations and further decrease fatigue damage. The results showed that the fatigue damage significantly decreased at four key locations. The fatigue life during the start-up phase was improved.
机译:本文使用商业有限元软件ABAQUS对1000 MW超超临界蒸汽轮机的轴对称转子进行建模,入口参数为35 Mpa和600A摄氏度。启动过程中转子的温度和Mises应力分布然后分析程序。通过基于应变寿命的Manson-Coffin方程和Miner规则预测了疲劳损伤。结果表明,疲劳损伤主要在转子表面产生。对于半衰期的要求,循环次数几乎达到4000。此外,提出了通过延长预热阶段的优化措施,以消除应变波动并进一步减少疲劳损伤。结果表明,疲劳损伤在四个关键部位显着降低。在启动阶段的疲劳寿命得到了改善。

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