首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EFFECT OF UNSTEADY WAKES ON LOCAL HEAT TRANSFER OF 1ST STAGE BLADE ENDWALL
【24h】

EFFECT OF UNSTEADY WAKES ON LOCAL HEAT TRANSFER OF 1ST STAGE BLADE ENDWALL

机译:非稳态尾迹对第一阶段叶片端壁局部传热的影响

获取原文

摘要

We investigated the local heat and mass transfer on the endwall surface at different Strouhal numbers. The Strouhal number represents the interaction between the turbine stator and rotor. Thus, characteristics of flow and heat transfer on the endwall surface change for different Strouhal numbers. The experiment was performed in five-bladed linear cascade blades with moving cylindrical rods simulating unsteady wakes effects. The Reynolds number which was based on the blade cord length and inlet velocity was 100,000. The range of the Strouhal number varies from 0 to 0.22 to investigate the effect of unsteady wakes on the endwall surface. The local heat and mass transfer were measured on the endwall surface using the naphthalene sublimation method. The results showed that the local heat transfer characteristics changed depending on the Strouhal number. In the steady case, the occurrence of a horseshoe vortex, passage vortex and corner vortex caused non-uniform heat transfer on the endwall surface. However, in the unsteady case, the unsteady wake effect caused more uniform heat transfer on the endwall surface. As the Strouhal number increased, heat transfer increased and became more uniform compared with the steady case. Thus, an appropriate cooling system is necessary for stator and rotor endwalls in situations of real gas turbine operation.
机译:我们在不同的Strouhal数字上调查了端壁表面上的局部热量和质量传递。 Strouhal数表示涡轮定子和转子之间的相互作用。因此,对于不同的斯特鲁姆数,对端壁表面的流动和传热的特性。实验是在五叶线性级联刀片中进行,具有移动圆柱杆,模拟不稳定唤醒效果。基于叶片绳索长度和入口速度的雷诺数为100,000。 Strouhal数的范围从0到0.22变化,以研究不稳定唤醒在端壁表面上的效果。使用萘升华法测量局部热量和传质在端壁表面上。结果表明,局部传热特性取决于斯特鲁姆数。在稳定的情况下,马蹄涡流,通道涡流和角涡流的发生导致端壁表面上的不均匀传热。然而,在不稳定的情况下,不稳定的唤醒效果在端壁表面上引起更均匀的传热。随着Strouhal数量的增加,与稳定的情况相比,传热增加并变得更加均匀。因此,在真实燃气涡轮机操作的情况下,定子和转子端包是必需的适当的冷却系统。

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