An experimental study on the efficiency of transpiration cooling in laminar and turbulent hypersonic flows

被引:0
作者
A. Gülhan
S. Braun
机构
[1] German Aerospace Center (DLR),
[2] RWTH Aachen University,undefined
来源
Experiments in Fluids | 2011年 / 50卷
关键词
Heat Flux; Mass Flow Rate; Cool Film; Porous Sample; Cooling Efficiency;
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学科分类号
摘要
An experimental study on the efficiency of transpiration cooling in hypersonic laminar and turbulent flow regimes is carried out in the Hypersonic Windtunnel Cologne with a focus on the aerothermal problems downstream of the cooled model part. The model is made of a material of low thermal conductivity (PEEK) with an integrated probe of a porous material. The experimental setup allows the direct comparison of the thermal behavior of transpiration cooling to a well-defined and radiatively cooled reference surface. Experiments are performed at Mach number of 6 and two different Reynolds numbers. Air, argon and helium are used as coolants at various flow rates, in order to identify the influence of coolant medium on cooling efficiency. The cooling efficiency of air and argon is comparable. Helium provides significantly higher cooling efficiency at the same blowing ratio, i.e. same coolant mass flow rate. The experimental data shows that the efficiency of the transpiration cooling in turbulent flows is much lower than in laminar flow.
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页码:509 / 525
页数:16
相关论文
共 5 条
[1]  
Gülhan A(2008)Experimental study on aerothermal heating caused by jet-hypersonic crossflow interaction AIAA J Spacecr Rockets 45 891-899
[2]  
Schütte G(1972)Heat transfer to the transpired turbulent boundary layer Int J Heat Mass Transf 15 1023-1044
[3]  
Stahl B(1963)Heat and mass transfer in transpired cooling Int J Heat Mass Transf 6 559-570
[4]  
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