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Blade Stress Analysis of Control Stage in Different Governing Mode

机译:不同调节方式下控制级叶片应力分析

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Using different governing modes in the process of large steam turbine load variations will make the thermal characteristic and force of unit get complicated, especially affect the thermal characteristic and force change of the control stage notability the most. This article researched the governing mode problems of the domestic-type 600 MW steam turbine, analyzed different characteristics in different governing modes of control valve, calculated the control stage blade force in different loads and governing modes, and the blade force variations on the main steam pressure change in the same load, based on large amount of field test data. By calculating and analyzing, we found that, the blade force of sequential valve governing mode is significantly higher than the single valve governing mode in domestic-type 600 MW steam turbine. For the same load, the higher the main steam pressure, the smaller the main steam flow, the greater control stage blade force is. Therefore, in the process of unit actual operation, it should try to avoid the risk of working conditions of control stage blade stress in order to ensure the safety of unit operation when the governing modes are switching or the control valve opening is changing to regulate the load.
机译:在汽轮机负荷变化较大的过程中采用不同的调节方式会使机组的热特性和力变得复杂,尤其是对控制级显着性的热特性和力变化影响最大。本文研究了国产600 MW汽轮机的调节方式问题,分析了不同控制阀调节方式的特性,计算了不同负荷和调节方式下的控制级叶片力,以及主汽轮机叶片力的变化。基于大量现场测试数据,在相同负载下的压力变化。通过计算和分析,发现顺序阀调节模式的叶片力明显高于国产600 MW汽轮机的单阀调节模式。对于相同的负载,主蒸汽压力越高,主蒸汽流量越小,控制级叶片力就越大。因此,在机组实际运行过程中,应尽量避免控制级叶片应力的工作状态风险,以确保在调节模式切换或控制阀开度改变以调节控制模式时机组安全运行。加载。

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