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A parametric investigation of vane pressure side cutback film cooling by dual luminophor PSP

机译:双发光体PSP对叶片压力侧切膜冷却的参数研究

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摘要

Because of its geometry, the vane trailing edge is one of the most difficult regions to be cooled. A trailing edge cutback cooling system is one of the most effective solution for cooling the trailing edge of high-pressure gas turbine nozzle vanes. In this study, a parametric analysis of the thermal performance of a nozzle vane cascade with a pressure side cooling system including two rows of cylindrical holes and a trailing edge cutback featuring 8 rectangular slots was carried out by using dual luminophor (binary) PSP technique. Coolant to mainstream mass flow rate (MFR), density ratio (DR), main flow Mach number (Ma(2ts)) and turbulence intensity level (Tu(1)) and the state of the approaching boundary layer were the considered parameters. Binary PSP was able to measure the coolant concentration independently from temperature, thus allowing to compute the true adiabatic film cooling effectiveness in a complex environment. MFR was shown to have a strong impact on both holes and cutback performance. The thermal protection over the cutback region was promoted by high Ma(2ts), and high DR values, while Tu(1) and the boundary layer state only marginally affected the thermal behavior, especially at high MFR.
机译:由于其几何形状,叶片后缘是最难冷却的区域之一。后缘切屑冷却系​​统是用于冷却高压燃气轮机喷嘴叶片后缘的最有效解决方案之一。在这项研究中,使用双发光体(二进制)PSP技术对带有压力侧冷却系统的喷嘴叶片叶栅的热性能进行了参数分析,压力侧冷却系统包括两排圆柱孔和具有8个矩形槽的后缘切边。冷却剂对主流质量流量(MFR),密度比(DR),主流马赫数(Ma(2ts))和湍流强度水平(Tu(1))以及接近边界层的状态是考虑的参数。二进制PSP能够独立于温度测量冷却剂浓度,因此可以计算复杂环境中真正的绝热膜冷却效率。事实证明,MFR对孔和切入性能都有很大影响。较高的Ma(2ts)和较高的DR值促进了在缩减区域上的热保护,而Tu(1)和边界层状态仅在一定程度上影响了热性能,尤其是在高MFR的情况下。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2018年第2期|106-116|共11页
  • 作者

    Abdeh H.; Barigozzi G.;

  • 作者单位

    Univ Bergamo, Dipartimento Ingn & Sci Applicate, Dalmine, BG, Italy;

    Univ Bergamo, Dipartimento Ingn & Sci Applicate, Dalmine, BG, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:59:41

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