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正交化设计对大子午扩张涡轮紧凑过渡段的流动性能影响
引用本文:付维亮,杜玉锋,孙恩博,高杰,郑群.正交化设计对大子午扩张涡轮紧凑过渡段的流动性能影响[J].推进技术,2021,42(6):1276-1284.
作者姓名:付维亮  杜玉锋  孙恩博  高杰  郑群
作者单位:哈尔滨工程大学 动力与能源工程学院 黑龙江 哈尔滨 150001,哈尔滨工程大学 动力与能源工程学院 黑龙江 哈尔滨 150001,哈尔滨工程大学 动力与能源工程学院 黑龙江 哈尔滨 150001,哈尔滨工程大学 动力与能源工程学院 黑龙江 哈尔滨 150001,哈尔滨工程大学 动力与能源工程学院 黑龙江 哈尔滨 150001
基金项目:国家自然科学基金(51779051、51979052);航空动力基金(6141B09050392)
摘    要:为了降低大子午扩张涡轮端区二次流损失和流动损失,同时降低过渡段缩短对涡轮性能的影响。本文对具有大子午扩张低压涡轮过渡段的紧凑过渡段设计进行气动分析,设计的紧凑型过渡段径向长度减小了30%,分析涡轮带原始过渡段和缩短后的紧凑型过渡段的气动性能和流场状态。并对涡轮静叶采用正交化设计,初步探索正交化设计对大子午扩张涡轮紧凑过渡段的流动性能的影响。研究发现,紧凑型的过渡段增加了气动损失,但涡轮静叶采用正交化设计后,整体效率增加了1.32%;正交化设计也能够改善叶片表面的压力分布,吸力面低压核心区从两个减少到一个;流道出口损失降低,涡轮整体气动性能提高。

关 键 词:大子午扩张  正交化设计  低压涡轮  气动性能  紧凑型过渡段
收稿时间:2020/1/14 0:00:00
修稿时间:2020/4/16 0:00:00

Effects of Orthogonal Design on Flow Performance of Compact Transition Section of Large Meridional Expansion Turbine
FU Wei-liang,DU Yu-feng,SUN En-bo,GAO Jie,ZHENG Qun.Effects of Orthogonal Design on Flow Performance of Compact Transition Section of Large Meridional Expansion Turbine[J].Journal of Propulsion Technology,2021,42(6):1276-1284.
Authors:FU Wei-liang  DU Yu-feng  SUN En-bo  GAO Jie  ZHENG Qun
Institution:Harbin Engineering University,,,Harbin Engineering University,
Abstract:In order to reduce secondary flow loss and flow loss in the end-wall of large meridional expansion turbines, and reduce the influence of shortening transition section on turbine. In this paper, aerodynamic analysis is carried out on the design of the compact transition section with large meridional expansion of the low-pressure turbine transition section, and the radial length of the compact transition section is reduced by 30%, and the aerodynamic performance and flow field state of the original turbine transition section and the shortened compact transition section are analyzed. In addition, the orthogonal design is adopted for the static turbine blade, and the influence of the orthogonal design on the flow performance of the large-meridian expansion turbine compact transition section is preliminarily explored. The study found that the compact transition section increased aerodynamic loss, but the overall efficiency increased by 1.32% after the turbine stator blade was designed with the orthogonal design. The orthogonal design can also improve the pressure distribution on the blade surface. The low-pressure core area on the suction surface is reduced from two to one. The exit loss of the flow passage is reduced and the overall aerodynamic performance of the turbine is improved.
Keywords:large meridional turbine  orthogonal design  low-pressure turbine  flow performance  compact transition section
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