首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >ENDWALL LOSS REDUCTION OF HIGH LIFT LOW PRESSURE TURBINE AIRFOILS USING PROFILE CONTOURING - PART Ⅰ: AIRFOIL DESIGN
【24h】

ENDWALL LOSS REDUCTION OF HIGH LIFT LOW PRESSURE TURBINE AIRFOILS USING PROFILE CONTOURING - PART Ⅰ: AIRFOIL DESIGN

机译:使用型材轮廓件的高升降低压涡轮机翼型的端壁损失减少 - 第Ⅰ:翼型设计

获取原文

摘要

This paper presents the reasoning for and the design process of contouring a high lift front-loaded low pressure turbine (LPT) airfoil near the endwall to reduce the endwall loss. The test airfoil, L2F, was designed to the approximate gas angles with 38% larger pitchwise spacing than the widely studied Pack B airfoil. Being more front-loaded with a higher stagger angle, L2F is shown to produce more endwall losses than Pack B. It is suggested that the high endwall loss of L2F is due to the high stagger angle, not front-loading as usually suggested in the literature. A procedure is presented to approximate the front-loading and stall resistance of L2F and obtain a low stagger version of that airfoil, designated L2F-LS. A contoured airfoil is then designed by transitioning L2F into L2F-LS at the endwall to obtain a benefit from the reduced stagger angle at the endwall. The contouring process generates a fillet, so the contoured airfoil is referred to as L2F-EF ("Endwall Fillet"). Predictions in this paper suggest endwall loss reductions between 17% and 24% at Re = 100,000. Linear cascade experiments in Part Ⅱ of this paper indicate that L2F-EF reduces endwall losses more than 20% compared to L2F. The overall conclusion is that the stagger angle has a significant effect on endwall loss and should be considered for designing high lift LPT airfoils at the endwall.
机译:本文介绍了在端墙上附近的高升降机前负载低压涡轮机(LPT)翼型的推理和设计过程,以减少端壁损耗。测试翼型L2F设计为近似气体角,其比广泛研究的包装B翼型更大的俯仰间距。更加惊人的角度更加前进,L2F被示出比包B产生更多的端壁损失。建议L2F的高端壁损失是由于高错角度,而不是通常建议的前负荷文学。提出了一种方法,以近似L2F的前负荷和倒置电阻,并获得翼型的低交误版本,指定为L2F-LS。然后通过将L2F转换为端壁的L2F-LS来设计一种轮廓翼型,以获得从端壁处的减小的错开角度获得受益。轮廓工艺产生圆角,因此轮廓翼型被称为L2F-EF(“端壁圆角”)。本文的预测表明RE = 100,000时的端壁损失减少17%至24%。本文第Ⅱ部分的线性级联实验表明,与L2F相比,L2F-EF减少了20%以上的端壁损失。总体结论是错位角对端壁损耗具有显着影响,并且应考虑在端壁处设计高升力LPT翼型。

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