Heat/Mass Transfer Characteristics on Stationary Turbine Blade and Shroud in a Low Speed Annular Cascade (II) - Tip and Shroud -

被引:5
|
作者
Rhee, Dong-Ho
Cho, Hyung Hee
机构
关键词
Turbine Blade Tip; Shroud; Heat/Mass Transfer; Tip Leakage Flow; Naphthalene Sublimation Method;
D O I
10.3795/KSME-B.2005.29.4.495
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Experiments were conducted in a low speed stationary annular cascade to investigate local heat transfer characteristics on the tip and shroud and the effect of inlet Reynolds number on the tip and shroud heat transfer. Detailed mass transfer coefficients on the blade tip and the shroud were obtained using a naphthalene sublimation technique. The turbine test section has a single stage composed of sixteen guide vanes and blades. The chord length and the height of the tested blade are 150 mm and about 125 mm, respectively. The blade has flat tip geometry and the mean tip clearance is about 2.5% of the blade chord. The inlet flow Reynolds number based on chord length and incoming flow velocity is changed from 1.0x10(5) to 2.3x10(5) to investigate the effect of Reynolds number. Flow reattachment after the recirculation near the pressure side edge dominates the heat transfer on the tip surface. Shroud surface has very intricate heat/mass transfer distributions due to complex flow patterns such as acceleration, relaminarization, transition to turbulent flow and tip leakage vortex. Heat/mass transfer coefficient on the blade tip is about 1.7 times as high as that on the shroud or blade surface. Overall averaged heat/mass transfer coefficients on the tip and shroud are proportional to Re-C(0.65) and Re-C0.71, respectively.
引用
收藏
页码:495 / 503
页数:9
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