TURBINE BLADE TIP FILM COOLING WITH BLADE ROTATION PART I: TIP AND PRESSURE SIDE COOLANT INJECTION

被引:0
|
作者
Tamunobere, Onieluan [1 ]
Acharya, Sumanta [1 ,2 ]
机构
[1] Louisiana State Univ, Turbine Innovat & Energy Res TIER Ctr, Baton Rouge, LA 70803 USA
[2] Univ Memphis, Dept Mech Engn, Memphis, TN 38152 USA
关键词
HEAT-TRANSFER; LEAKAGE; HOLES; TIME;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This is the first in a two-part series of an experimental film cooling study conducted on the tip of a turbine blade with a blade rotation speed of 1200 RPM. In this part of the study, the coolant is injected from the blade tip and pressure side (PS) holes, and the effect of the blowing ratio on the heat transfer coefficient and film cooling effectiveness of the blade tip is investigated. The blade has a tip clearance of 1.7% of the blade span and consists of a cut back squealer rim, two cylindrical tip holes and six shaped pressure side holes. The stator-rotor-stator test section is housed in a closed loop wind tunnel that allows for the performance of transient heat transfer tests. Measurements of the heat transfer coefficient and film cooling effectiveness are done on the blade tip using liquid crystal thermography. These measurements are reported for the no coolant case and for blowing ratios of 1.0, 1.5, 2.0, 3.0 and 4.0. The heat transfer results for the no coolant injection show a region of high heat transfer on the blade tip near the blade leading edge region as the incident flow impinges on that region. This region of high heat transfer extends and stretches on the tip as more coolant is introduced through the tip holes at higher blowing ratios. The cooling results show that increasing the blowing ratio increases the film cooling effectiveness. The tip film cooling profile is such that the tip coolant is pushed towards the blade suction side thereby providing better coverage in that region. The shift in coolant flow profile towards the blade suction side as opposed to the pressure side in stationary studies can primarily be attributed to the effects of the blade relative motion.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] TURBINE BLADE TIP COOLING MODELLING AND OPTIMIZATION
    Vogel, Gregory
    Agrawal, Anmol
    Nannapaneni, Praneetha
    PROCEEDINGS OF THE ASME TURBO EXPO 2009, VOL 3, PTS A AND B, 2009, : 139 - 147
  • [22] Investigation of Film Cooling Effectiveness on Squealer Tip of a Gas Turbine Blade
    Yang, Dianliang
    Feng, Zhenping
    Yu, Xiaobing
    PROCEEDINGS OF THE ASME TURBO EXPO 2009, VOL 3, PTS A AND B, 2009, : 991 - 1000
  • [23] Heat transfer and film cooling effectiveness on the squealer tip of a turbine blade
    Park, Jun Su
    Lee, Dong Hyun
    Rhee, Dong-Ho
    Kang, Shin Hyung
    Cho, Hyung Flee
    ENERGY, 2014, 72 : 331 - 343
  • [24] Film cooling effects on the tip flow characteristics of a gas turbine blade
    Wang, Jin
    Sunden, Bengt
    Zeng, Min
    Wang, Qiuwang
    PROPULSION AND POWER RESEARCH, 2015, 4 (01) : 9 - 22
  • [25] Investigations of film cooling and heat transfer on a turbine blade squealer tip
    He, Kun
    APPLIED THERMAL ENGINEERING, 2017, 110 : 630 - 647
  • [26] Film cooling characteristics analysis of turbine blade tip in transonic flow
    Zhang B.
    Xia J.
    Hu Q.
    Zhu H.
    Guofang Keji Daxue Xuebao/Journal of National University of Defense Technology, 2024, 46 (02): : 153 - 161
  • [27] Uncertainty quantification in effects of geometric deviations on heat transfer and film cooling of blade squealer tip with pressure-side coolant
    You, Yulong
    Ding, Liang
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2024, 153
  • [28] A Combined Experimental and Numerical Study of the Turbine Blade Tip Film Cooling Effectiveness Under Rotation Condition
    Rezasoltani, Mohsen
    Lu, Kun
    Schobeiri, Meinhard T.
    Han, Je-Chin
    JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 2015, 137 (05):
  • [29] A Combined Experimental and Numerical Study of the Turbine Blade Tip Film Cooling Effectiveness under Rotation Condition
    Rezasoltani, M.
    Lu, K.
    Schobeiri, M. T.
    Han, J. C.
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2014, VOL 5B, 2014,
  • [30] A study for the film cooling performance on the turbine blade suction side tip region under rotating conditions
    Wang, Haichao
    Tao, Zhi
    Zhou, Zhiyu
    Zhou, Huimin
    Ma, Yiwen
    Li, Haiwang
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2019, 138 : 483 - 495