MASS TRANSFER EXPERIMENTAL STUDIES ON THEFILM COOLING EFFECTIVENESS OVER THECONVEX SURFACE WITH DOUBLE-ROWDISCRETE HOLES
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MASS TRANSFER EXPERIMENTAL STUDIES ON THEFILM COOLING EFFECTIVENESS OVER THECONVEX SURFACE WITH DOUBLE-ROWDISCRETE HOLES
Vol. 1, Issue 1, (1986)
作者机构:
1. 中国科学院工程热物理研究所
2. 美国德克赛尔大学
作者简介:
基金信息:
DOI:
CLC:
Published:1986
稿件说明:
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Yao Yongqing, Xia Bing, Ge Shaoyan, et al. MASS TRANSFER EXPERIMENTAL STUDIES ON THEFILM COOLING EFFECTIVENESS OVER THECONVEX SURFACE WITH DOUBLE-ROWDISCRETE HOLES[J]. 1986, 1(1).
DOI:
Yao Yongqing, Xia Bing, Ge Shaoyan, et al. MASS TRANSFER EXPERIMENTAL STUDIES ON THEFILM COOLING EFFECTIVENESS OVER THECONVEX SURFACE WITH DOUBLE-ROWDISCRETE HOLES[J]. 1986, 1(1).DOI:
MASS TRANSFER EXPERIMENTAL STUDIES ON THEFILM COOLING EFFECTIVENESS OVER THECONVEX SURFACE WITH DOUBLE-ROWDISCRETE HOLES
The distribution of film cooling effectiveness for staggered double-row discrete holes has been measured extensively over the whole area of convex surface. It has been found that whether or not the blowing ratio of first row is equal tothat of the second one
higher blowing ratio causes stronger separation of the film jet
the cooling effect is thus reduced remarkably
and the optimized value of the blowing ratio for better film cooling effectiveness is M≤0.5.Experimental results show that for convex surface the blowing ratio of first row should be smaller than that of second row in order to get better cooling results
for example Mf=0.3. The distance between cooling holes as well as the blowing ratio M should be both smaller on the convex surface.