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Thermal stress analysis for rotor of 600MW supercritical steam turbine

机译:600MW超临界汽轮机转子热应力分析

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With the increase of steam turbine's steam parameter and the participation in peak-load adjustment of power grid more and more frequently, the stress of the turbine's rotor is becoming increasingly complex, and the alternating thermal stress has became the major factor reducing its life. This paper used a 600MW supercritical steam turbine's rotor as the research object, and analyzed the variation of thermal stress in the warm starting-up process. In this paper the analysis based on the operating data measured from actual operation and calculate the variations of the temperature field and stress field during the process of warm starting-up with the method of thermal-structure direct interaction analysis by Ansys. By analyzing the results, it proves that the maximum stress of the rotor is in the first stage of the intermediate pressure casing, and it is the main factor restricting the velocity of steam turbine's starting-up process. This result which calculated and analyzed by finite element method can be a theoretical basis for the optimal operation and online monitoring of turbine units.
机译:随着汽轮机蒸汽参数的增加和电网调峰的越来越频繁,汽轮机转子的应力变得越来越复杂,交变的热应力已成为降低其寿命的主要因素。本文以600MW超临界汽轮机转子为研究对象,分析了热启动过程中热应力的变化。本文基于实际运行中测得的运行数据进行分析,并利用Ansys公司的热结构直接相互作用分析方法计算了热启动过程中温度场和应力场的变化。分析结果表明,转子的最大应力处于中压壳体的第一级,是制约汽轮机启动过程速度的主要因素。通过有限元计算和分析得出的结果可为涡轮机组的优化运行和在线监测提供理论依据。

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