scholarly journals On the Experimental Study of Tuyere Model Ablation and Its Heat Transfer Analysis

Author(s):  
Syogo MATSUNAGA ◽  
Hiroshi YAMAOKA ◽  
Morio KAWASAKI ◽  
Koichi HARADA
2019 ◽  
Vol 138 (2) ◽  
pp. 1711-1722
Author(s):  
Rongliang Pan ◽  
Guoqing Zhu ◽  
Guowei Zhang ◽  
Weiguang An ◽  
Hui Zhu ◽  
...  

1974 ◽  
Vol 60 (2) ◽  
pp. 177-183 ◽  
Author(s):  
Syogo MATSUNAGA ◽  
Hiroshi YAMAOKA ◽  
Morio KAWASAKI ◽  
Koichi HARADA

Author(s):  
M. Lorenz ◽  
A. Schulz ◽  
H.-J. Bauer

The present experimental study is part of a comprehensive heat transfer analysis on a highly loaded low pressure turbine blade and endwall with varying surface roughness. Whereas a former paper [1] focused on full span heat transfer of a smooth airfoil and surface roughness effects on the endwall, in this work further measurements at the airfoil midspan with different deterministic surface roughness are considered. Part I investigates the external heat transfer enhancement due to rough surfaces whereas part II focuses on surface roughness effects on aerodynamic losses. A set of different arrays of deterministic roughness is investigated in these experiments, varying the height and eccentricity of the roughness elements, showing the combined influence of roughness height and anisotropy of the rough surfaces on laminar to turbulent transition and the turbulent boundary layer as well as boundary layer separation on the pressure and suction side. It is shown that — besides the known effect of roughness height — eccentricity of roughness plays a major role in the onset of transition and the turbulent heat transfer. The experiments are conducted at several free-stream turbulence levels (Tu1 = 1.4% to 10.1%) and different Reynolds numbers.


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