HEAT TRANSFER AND CROSSFLOW INVESTIGATIONS FOR JET IMPINGEMENT COOLING APPLICATIONS
Author:
Affiliation:
1. Department of Mechanical Engineering, The University of Wisconsin-Milwaukee
2. Richard & Joanne Grigg Fellow Professor, The University of Wisconsin-Milwaukee
Publisher
Gas Turbine Society of Japan
Link
https://www.jstage.jst.go.jp/article/jgpp/15/1/15_vol15no1tp03/_pdf
Reference31 articles.
1. Lee, J., Ren, Z., Ligrani, P., Fox, M. D., and Moon, H.-K., 2015, “Crossflows From Jet Array Impingement Cooling: Hole Spacing, Target Plate Distance, Reynolds Number Effects,” International Journal of Thermal Sciences, pp.7-18.
2. Nourin, F., Salem, A. R., and Amano, R., 2020, “Investigation of Jet Impingement Cooling for Gas Turbine Blade with Inline and Staggered Nozzle Arrays,” International Journal of Energy for a Clean Environment, vol. 21, no. 2, pp. 169-182.
3. Salem, A. R., Nourin, F., Abousabae, M., and Amano R., 2021, “Experimental and Numerical Study of Jet Impingement Cooling for Improved Gas Turbine Blade Internal Cooling with Inline and Staggered Nozzle Arrays,” ASME. J. Energy Resour. Technol, vol. 143, no. 1.
4. Xing, Y., and Weiganad, B., 2013, “Optimum Jet-to-Plate Spacing of Inline Impingement Heat Transfer for Different Crossflow Schemes,” ASME. J. Heat Transfer, vol. 135, no.7.
5. Olsson, E., Ahrne, L., and Tragardh, A., 2013, “Flow and heat transfer from multiple slot air jets impinging on circular cylinders”, Journal of food engineering, vol. 67, no.3, pp. 273-280.
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