本文通过数值模拟的方法同时考虑了耦合传热和冷却流通道流动对气膜冷却的影响.计算结果表明,在考虑耦合传热的情况下,冷却流通道流动的影响仍然存在,但随着壁面导热系数的增大,这种影响减弱;同时在考虑耦合传热的情况下,受保护壁面温度场分布更加均匀,冷却效果更好.计算结果还表明吹风比为0.5时的冷却效果优于吹风比为1.0的情况.
Numerical simulations were used to assess the effect of a conjugate heat transfer and internal coolant flow on film cooling.The results indicate that the cooling performance is affected by the internal coolant flow with conjugate heat transfer,but the effect weakens with an increase in wall thermal conductivity.The wall temperatures are more uniform and the cooling performance is better with consideration of the conjugate heat transfer.The cooling performance with a blowing ratio of 0.5 is better than that with a blowing ratio of 1.0.
参考文献
[1] | 葛绍岩;刘登瀛;徐静中.气膜冷却[M].北京:科学出版社,1985 |
[2] | D. K. Walters;J. H. Leylek .A systematic computational methodology applied to a three-dimensional film-cooling flowfield[J].Journal of turbomachinery,1997(4):777-785. |
[3] | Sinha A K;Bogaxd D G;Crawford M E .Film-Cooling Effectiveness Downstream of a Single Row of Holes with Variable Density Ratio[J].ASME Journal of Turbomachin-ery,1991,113:442-449. |
[4] | Michael Gritsch;Achmed Schulz;Sigmar Wittig .Effect of Internal Coolant Crossflow on the Effectiveness of Shaped Film-Cooling Holes[J].Journal of turbomachinery,2003(3):547-554. |
[5] | M. Gritsch;C. Saumweber;A. Schulz;S. Wittig;E. Sharp .Effect of Internal Coolant Crossflow Orientation on the Discharge Coefficient of Shaped Film-Cooling Holes[J].Journal of turbomachinery,2000(1):146-152. |
[6] | K. A. Thole;M. Gritsch;A. Schulz;S. Wittig .Effect of a crossflow at the entrance to a film-cooling hole[J].Journal of Fluids Engineering: Transactions of the ASME,1997(3):533-540. |
[7] | 王扬平 .燃气轮机叶片气膜冷却和内部冷却的基础研究[D].北京:清华大学,2006. |
[8] | Lu X C;Jiang P X;Uechi H et al.conjugate Heat Trans-fer Analysis of Film Cooling Flows[J].Journal of Thermal Science,2007,15(01):85-91. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%