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Effect of oblique stator on the aerodynamic performance and erosion characteristics of governing stage blades in a supercritical steam turbine

机译:倾斜定子对超临界汽轮机控制阶段叶片的空气动力性能和腐蚀特性的影响

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摘要

In this article, a new particle tracking model is established through high temperature erosion modeling test. Based on the model, steam-particle flows in the governing stage cascade of a supercritical steam turbine are systematically investigated and the influence of oblique stator on the aerodynamic performance and erosion characteristics of governing stage blades is carefully studied. Results show that with the increase of nozzle oblique angle, the maximum load position gradually moves toward nozzle trailing edge. Consequently, secondary flow loss of nozzle cascade gradually decreases. Compared with the prototype structure of governing stage, stage efficiency increases by 0.8%, 0.35%, and 0.44%, respectively, when nozzle oblique angle increases to 15°, 30°, and 45°. Meanwhile, erosion at the trailing edge of nozzle pressure side and leading edge of rotor suction side gradually decreases, while erosion of rotor pressure surface increases. The maximum erosion position of nozzle pressure surface and rotor suction surface keeps constant, but the maximum erosion position of rotor pressure surface gradually moves forward. Comprehensive analysis shows that when nozzle oblique angle reaches 30°, erosion of nozzle trailing edge reduces by 14%, and stage efficiency increases by 0.35%; erosion resistance and aerodynamic performance of governing stage can be both well considered.
机译:在这篇文章中,一个新的粒子跟踪模型是通过高温腐蚀模拟试验建立的。基于该模型,蒸汽粒子在超临界蒸汽涡轮机的系统的研究和斜定子的上调节级叶片的空气动力学性能和腐蚀特性的影响的调节级级联流动时认真研究。结果表明,与喷嘴斜角的增加,最大负载位置逐渐朝向喷嘴移动后缘。因此,喷嘴级联的二次流损失逐渐减小。与调节级,分别为0.8%,0.35%,和0.44%,级效率增加时,原型结构相比时喷嘴倾斜角增加至15°,30°,和45°。同时,在侵蚀喷嘴压力侧的后缘和转子吸入侧的前缘逐渐减小,而转子压力面增大侵蚀。喷嘴压力表面和吸力转子表面的最大侵蚀位置保持不变,但转子压力表面的最大侵蚀位置逐渐前移。综合分析表明,当喷嘴倾斜角达到30°,喷嘴后缘的侵蚀14%减少,以及由0.35%级效率增大;耐腐蚀和管理阶段的空气动力性能能够很好地考虑两者。

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