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Unsteady Flow Simulation through Stator-Rotor Blade Rows in Intermediate-Pressure Steam Turbines with Cutback Blades

机译:通过具有Cudback刀片的中压蒸汽涡轮机定子 - 转子叶片行的不稳定流模拟

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Stator and rotor blades in intermediate-pressure steam turbines gradually deteriorate during operation because of solid particle erosion. In addition to that, turbine blades unexpectedly crack because of metal fatigue or thermal stress deformation. As eroded blades increase the aerodynamic losses and cracked blades may induce rupture of the blade, the periodic maintenance, repair, and overhaul of steam turbines is essential. Eroded or cracked blades should be replaced with new ones or repaired for further use. Cutback treatment is one of the repair methods wherein the deteriorated trailing edge on a turbine blade is removed to avoid further cracking and blade fracturing. The use of cutback blades can reduce the replacement cost; however, that may affect the steam flow and the turbine's performance. In this study, we numerically investigated the effect of the blade deterioration on the performance of a three-stage intermediate-pressure steam turbine using a numerical method that was developed at Tohoku University. Further various cutback lengths were considered for the deteriorated first-stage stator-blade trailing edge. The obtained numerical results indicate that the cutback first-stage stator blades certainly affected the steam flow in the turbine, resulting in a negative influence on the torque obtained from the adjacent rotor blades, which depends on the cutback length. However, the torque decrement can be mitigated by arranging the cutback and non-cutback stator blades alternately in a row.
机译:由于固体颗粒侵蚀,在中压蒸汽涡轮机中的定子和转子叶片在操作期间逐渐恶化。除此之外,由于金属疲劳或热应力变形,涡轮叶片意外地破裂。由于侵蚀的刀片增加了空气动力学损失,并且裂纹刀片可能会引起刀片的破裂,周期性的维护,修复和蒸汽涡轮机的大修是必不可少的。侵蚀或破裂的刀片应替换为新的或修理以供进一步使用。 Cudback处理是一种修复方法之一,其中去除涡轮叶片上的劣化后缘以避免进一步开裂和叶片压裂。削减刀片的使用可以降低更换成本;然而,这可能会影响蒸汽流量和涡轮机的性能。在这项研究中,我们使用在Ohoku大学开发的数值方法进行数值研究了叶片劣化对三级中压蒸汽涡轮机的性能的影响。对于劣化的第一级定子 - 叶片后缘,考虑了各种倒钩长度。所得数值结果表明,倒钩的第一级定子叶片肯定影响了涡轮机中的蒸汽流动,从而导致从相邻转子叶片获得的扭矩产生负面影响,这取决于倒钩长度。然而,可以通过排列连续交替地布置倒带和非倒钩定子叶片来减轻扭矩减量。

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