...
首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Effect of in-service burnout on the transonic tip leakage flows over flat tip model
【24h】

Effect of in-service burnout on the transonic tip leakage flows over flat tip model

机译:在线尖端型延长尖端泄漏在跨音尖漏的影响

获取原文
获取原文并翻译 | 示例

摘要

Un-shrouded turbine blades are more common than shrouded ones in gas turbine aero-engines since they reduce the weight and avoid the centrifugal loading caused by the blades’ shrouds. Despite these important advantages, the absence of the shroud leads to leakage flows across the tip gap and exposes the blade tip to high thermal load and thermal damages. In addition, the leakage flows can contribute up to 30% of the aerodynamic loss in a turbine stage. In this study, the effect of in-service burnout is explored using a fundamental flat tip model of a high-pressure gas turbine blade. This investigation is carried out both experimentally in a transonic wind tunnel and computationally using the Reynolds Averaged Navier-stokes approach at high-speed conditions. It is found that exposing the tip to the in-service burnout effect changes the leakage flow behaviour significantly when compared with the tip with sharp edges (i.e. the tip at the start of its operational life). Different flow acceleration, flow structure and shockwave pattern and interactions are captured for the round-edge flat tip (i.e. the tip exposed to in-service burnout). The effective tip gap is found to be much larger for the round-edge flat tip allowing more leakage flow into the tip gap which results into higher tip leakage losses in comparison to the sharp-edge tip. Experimental and computational flow visualisations, surface pressure distributions and discharge coefficient are given and analysed for several pressure ratios over the tip gap.
机译:由于它们减轻了燃气涡轮机通风中的笼罩,而不是笼罩的涡轮机叶片更常见,因为它们减轻了重量并避免由叶片护罩引起的离心机。尽管存在这些重要的优点,但缺乏护罩导致尖端间隙泄漏流动,并将刀尖暴露于高热载荷和热损坏。此外,泄漏流量可以促进涡轮机级的高达30%的空气动力学损失。在这项研究中,利用高压燃气涡轮叶片的基本扁平尖端模型探索了维修倦怠的效果。这项调查在实验中进行了实验在跨音风隧道中,并在高速条件下使用雷诺平均雷诺 - Stokes方法进行计算。发现将尖端暴露于维护倦怠效果,与具有锋利边缘的尖端相比(即尖端在其运行寿命开始时)相比,显着改变泄漏流动行为。针对圆形扁平尖端(即,暴露于维护在式倦怠的尖端)捕获不同的流动加速度,流动结构和冲击波图案和相互作用。对于圆形边缘的圆形尖端,允许更多的泄漏流入尖端间隙的尖端间隙具有更大的有效尖端间隙,这与尖锐边缘尖端相比导致尖端漏损失。给出实验和计算流程,表面压力分布和放电系数,并在尖端间隙上进行若干压力比。

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