首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Degradation of Aerodynamic Performance of an Intermediate-Pressure Steam Turbine Due to Erosion of Nozzle Guide Vanes and Rotor Blades
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Degradation of Aerodynamic Performance of an Intermediate-Pressure Steam Turbine Due to Erosion of Nozzle Guide Vanes and Rotor Blades

机译:喷嘴导流叶片和转子叶片腐蚀导致中压蒸汽轮机的空气动力学性能下降

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Deteriorations of nozzle guide vanes (NGVs) and rotor blades of a steam turbine through a long-time operation usually decrease a thermal efficiency and a power output of the turbine. In this study, influences of blade deformations due to erosion are discussed. Experiments were carried out in order to validate numerical simulations using a commercial software ANSYS-CFX. The numerical results showed acceptable agreements with experimental results. Variation of flow characteristics in the first stage of the intermediate pressure steam turbine is examined using numerical simulations. Geometries of the NGVs and the rotor blades are measured using a 3D scanner during an overhaul. The old NGVs and the rotor blades, which were used in operation, were eroded through the operation. The erosion of the NGVs leaded to increase of the throat area of the nozzle. The numerical results showed that rotor inlet velocity through the old NGVs became smaller and the flow angle of attack to the rotor blade leading edge became smaller. Consequently, the rotor power decreased significantly. Influences of the flow angle of at the rotor inlet were examined by parametric calculations and results showed that the angle of attack was an important parameter to determine the rotor performance. In addition, the influence of the deformation of the rotor blade was examined. The results showed that the degradation of the rotor performance decreased in accordance with the decrease of blade surface area.
机译:蒸汽涡轮的喷嘴导叶(NGV)和转子叶片由于长时间运行而劣化通常会降低涡轮的热效率和功率输出。在这项研究中,讨论了由于腐蚀引起的叶片变形的影响。为了使用商用软件ANSYS-CFX验证数值模拟,进行了实验。数值结果与实验结果吻合良好。使用数值模拟检查了中压蒸汽轮机第一阶段的流量特性变化。在大修期间,使用3D扫描仪测量NGV和转子叶片的几何形状。运行过程中使用的旧NGV和转子叶片受到腐蚀。 NGV的侵蚀导致喷嘴的喉部面积增加。数值结果表明,通过旧NGV的转子入口速度变小,并且对转子叶片前缘的迎角流角变小。因此,转子功率显着降低。通过参数计算检查了转子入口处的流角的影响,结果表明,迎角是决定转子性能的重要参数。另外,检查了转子叶片的变形的影响。结果表明,转子性能的降低随着叶片表面积的减小而减小。

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