首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Effects of struts profiles and skewed angles on the aerodynamic performance of gas turbine exhaust diffuser
【24h】

Effects of struts profiles and skewed angles on the aerodynamic performance of gas turbine exhaust diffuser

机译:支柱型材和偏斜角度对燃气轮机排气扩散器空气动力学性能的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The strut structure directly affects the flow field characteristics and aerodynamic performance of the gas turbine exhaust diffuser. The effects of the strut profiles and strut skewed angles on the aerodynamic performance of the exhaust diffuser at different inlet pre-swirls were numerically investigated using three-dimensional Reynolds-Averaged Navier-Stokes(RANS) and Realizable k-ε turbulence model. The numerical static pressure recovery coefficient of the exhaust diffuser is in agreement with the experimental data well. The reliability of the numerical method for the exhaust diffuser performance analysis was demonstrated. Exhaust diffusers with four kinds of vertical strut profiles obtain the highest static pressure recovery coefficient at the inlet pre-swirl of 0.35. The similar static pressure recovery coefficient of exhaust diffusers with four kinds of vertical strut airfoils are observed when the inlet pre-swirl is less than 0.48. The static pressure recovery coefficient of exhaust diffusers with vertical b1 and b2 struts are higher than that with the a1 and a2 struts when the inlet pre-swirl is greater than 0.48. At the inlet pre-swirl of 0.35, The static pressure recovery coefficient of the exhaust diffuser with the a1 strut decreases with the increasing of the strut skewed angles. The static pressure recovery coefficient of the exhaust diffuser with the b1 strut increases with the increasing of the strut skewed angles, and the static pressure recovery coefficient increases by 3.6% compared with the vertical design when the skewed angle of b1 strut is 40 ° . At the inlet pre-swirl of 0.64. The static pressure recovery coefficient of the exhaust diffuser with the a1 strut increases by 8.7% compared with the vertical design when the skewed angle of a1 strut is greater than 20~(°). In addition, the static pressure recovery coefficient of the exhaust diffuser with the b1 strut decreases by 3.8% compared with the vertical design when the skewed angle of b1 strut is 40~(°). The method to improve the aerodynamic performance of the exhaust diffuser by appropriate increase the strut maximum thickness and design the strut skewed angle is proposed in this work.
机译:支柱结构直接影响燃气涡轮机排气扩散器的流场特性和空气动力学性能。使用三维雷诺平均的Navier-Stokes(RAN)和可实现的K-ε湍流模型,用三维雷诺平均的Navier-Stokes(RAN)和可实现的K-ε湍流模型进行数值研究了支柱剖面对不同入口预旋转处的排气漫射器的空气动力学性能的影响。排气扩散器的数值静压回收系数与实验数据一致。证明了排气扩散器性能分析的数值方法的可靠性。具有四种垂直支柱型材的排气扩散器在0.35的入口预旋转中获得最高的静压回收系数。当入口预先涡流小于0.48时,观察到具有四种垂直支柱翼型的排气扩散器的类似静压回收系数。当入口预旋涡大于0.48时,具有垂直B1和B2支柱的排气扩散器的静压回收系数高于A1和A2支柱。在0.35的入口预旋涡处,随着支柱偏斜角度的增加,具有A1支柱的排气扩散器的静压回收系数减小。与B1支柱的静压回收系数随着支柱偏斜角的增加而增加,并且当B1支柱的偏斜角度为40°时,静压回收系数与垂直设计相比增加3.6%。在0.64的入口预旋转。当A1支柱的偏斜角度大于20〜(°)时,具有A1支柱的排气扩散器的静压回收系数随着垂直设计而增加了8.7%。另外,与B1支柱的偏斜角度为40〜(°)时,具有B1支柱的排气扩散器的静压回收系数减小了3.8%。通过适当地提高排气扩散器的空气动力学性能的方法,增加支柱的最大厚度和设计在这项工作中提出了支柱偏斜角。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号