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Design of a 160% pitch passage for cascade experiments using optimization methods

机译:使用优化方法设计用于级联实验的160%螺距通道

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摘要

A linear turbine cascade experimental apparatus often consists of only a few cascade blades. Advantages to this arrangement are increased from using larger cascade blades and easier optical access. However, fewer cascade blades in the cascade row make it difficult to establish periodic flow conditions between blades. In this study, a 160% pitch passage for cascade experiments with a single blade is designed to satisfy infinite cascade flow conditions without any flow control or tailboards. Fourteen geometric design variables are applied to the design of a 160% pitch passage by using a gradient-based optimization method and a genetic algorithm. Flow structures within a passage designed with a genetic algorithm are closer to the infinite cascade flow conditions than those obtained with a gradient-based method. The results show that infinite cascade flow conditions can be obtained by modifying only the passage walls of the cascade experimental apparatus.
机译:线性涡轮机级联实验设备通常仅由几个级联叶片组成。通过使用较大的叶栅叶片和更容易的光学访问,增加了该布置的优点。然而,级联排中较少的级联叶片使得难以在叶片之间建立周期性的流动条件。在这项研究中,使用单个叶片进行级联实验的160%螺距通道旨在满足无限级联流动条件,而无需任何流量控制或尾板。通过使用基于梯度的优化方法和遗传算法,将十四个几何设计变量应用于160%螺距通道的设计。用遗传算法设计的通道中的流动结构比使用基于梯度的方法获得的流动结构更接近无限级联流动条件。结果表明,仅通过修改级联实验装置的通道壁即可获得无限级联流动条件。

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  • 来源
    《Engineering Optimization》 |2010年第3期|p.253-269|共17页
  • 作者

    Chong-Hyun Cho; Soo-Yong Cho;

  • 作者单位

    Department of Mechanical and Aerospace Engineering (RECAPT), Gyeongsang National University, 900 Gajwa-dong, Jinju, Gyeongnam, 660-701, Republic of Korea Department of Eco-Machinery, Korea Institute of Machinery and Materials, 171 Jang-dong, Daejeon, 305;

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