Numerical and experimental investigation of turbine blade film cooling

被引:0
|
作者
Amar Berkache
Rabah Dizene
机构
[1] Mechanical Engineering Department,Energy Mechanics and Conversion Laboratory (LMESC)
[2] USTHB University,undefined
来源
Heat and Mass Transfer | 2017年 / 53卷
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摘要
The blades in a gas turbine engine are exposed to extreme temperature levels that exceed the melting temperature of the material. Therefore, efficient cooling is a requirement for high performance of the gas turbine engine. The present study investigates film cooling by means of 3D numerical simulations using a commercial code: Fluent. Three numerical models, namely k-ε, RSM and SST turbulence models; are applied and then prediction results are compared to experimental measurements conducted by PIV technique. The experimental model realized in the ENSEMA laboratory uses a flat plate with several rows of staggered holes. The performance of the injected flow into the mainstream is analyzed. The comparison shows that the RANS closure models improve the over-predictions of center-line film cooling velocities that is caused by the limitations of the RANS method due to its isotropy eddy diffusivity.
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页码:3443 / 3458
页数:15
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