- Ma, C.F. and Tian, Y.Q., 1990. Experimental investigation on two-phase two-component jet impingement heat transfer from simulated microelectronic heat sources. International communications in heat and mass transfer, 17(4), pp.399-408.
- Yu, P., Zhu, K., Sun, T., Yuan, N. and Ding, J., 2017. The heat transfer rate and uniformity of mist flow jet impingement for glass tempering. International Journal of Heat and Mass Transfer, 115, pp.368-378.
- Sarkar, A. and Singh, R.P., 2004. Air impingement technology for food processing: visualization studies. LWT-Food Science and Technology, 37(8), pp.873-879.
- Takrouri, K., Luxat, J. and Hamed, M., 2017. Measurement and analysis of the re-wetting front velocity during quench cooling of hot horizontal tubes. Nuclear Engineering and Design, 311, pp.184-198.
- Jondhale, K.V., Wells, M.A., Militzer, M. and Prodanovic, V., 2008. Heat transfer during multiple jet impingement on the top surface of hot rolled steel strip. steel research international, 79(12), pp.938-946.
- Greaves Jr, J.D., 1990. Numerical analysis of the outside vapor deposition process(Doctoral dissertation, Ohio University).
- Ferng, Y.M. and Liu, C.H., 2011. Numerically investigating fire suppression mechanisms for the water mist with various droplet sizes through FDS code. Nuclear Engineering and Design, 241(8), pp.3142-3148.
- Al Ali, A.R. and Janajreh, I., 2015. Numerical simulation of turbine blade cooling via jet impingement. Energy Procedia, 75, pp.3220-3229.
- Han, J.C., Glicksman, L.R. and Rohsenow, W.M., 1978. An investigation of heat transfer and friction for rib-roughened surfaces. International Journal of Heat and Mass Transfer, 21(8), pp.1143-1156.
- Seyed-Yagoobi, J., 1996. Enhancement of heat and mass transfer with innovative impinging jets. Drying technology, 14(5), pp.1173-1196.
- Paisarn, N. and Somchai, W., 2011. Experimental study of jet nanofluids impingement system for cooling computer processing unit. Journal of Electronics Cooling and Thermal Control, 2011.
- Parida, P.R., Ekkad, S.V. and Ngo, K., 2010, January. Novel PCM and Jet Impingement Based Cooling Scheme for High Density Transient Heat Loads. In International Heat Transfer Conference(Vol. 49422, pp. 443-450).
- Leocadio, H., Van Der Geld, C.W.M. and Passos, J.C., 2018. Rewetting and boiling in jet impingement on high temperature steel surface. Physics of Fluids, 30(12), p.122102.
- Singh, P., Zhang, M., Ahmed, S., Ramakrishnan, K.R. and Ekkad, S., 2019. Effect of micro-roughness shapes on jet impingement heat transfer and fin-effectiveness. International Journal of Heat and Mass Transfer, 132, pp.80-95.
- Nagesha, K., Srinivasan, K. and Sundararajan, T., 2020. Enhancement of jet impingement heat transfer using surface roughness elements at different heat inputs. Experimental Thermal and Fluid Science, 112, p.109995.
- Tepe, A.Ü., Uysal, Ü., Yetişken, Y. and Arslan, K., 2020. Jet impingement cooling on a rib-roughened surface using extended jet holes. Applied Thermal Engineering, 178, p.115601.
- Kim, T.H., Do, K.H. and Kim, S.J., 2017. Closed-form correlations of pressure drop and thermal resistance for a plate fin heat sink with uniform air jet impingement. Energy Conversion and Management, 136, pp.340-349.
- Han, J.C., Glicksman, L.R. and Rohsenow, W.M., 1978. An investigation of heat transfer and friction for rib-roughened surfaces. International Journal of Heat and Mass Transfer, 21(8), pp.1143-1156.
- Jing, Q., Zhang, D. and Xie, Y., 2018. Numerical investigations of impingement cooling performance on flat and non-flat targets with dimple/protrusion and triangular rib. International Journal of Heat and Mass Transfer, 126, pp.169-190.
- Xie, Y., Li, P., Lan, J. and Zhang, D., 2013. Flow and heat transfer characteristics of single jet impinging on dimpled surface. Journal of heat transfer, 135(5).
- Kanokjaruvijit, K. and Martinez-Botas, R.F., 2004. An experimental investigation of the heat transfer due to multiple jets impinging normally on a dimpled surface. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 218(11), pp.1337-1347.
- Kanokjaruvijit, K. and Martinez-botas, R.F., 2005. Jet impingement on a dimpled surface with different crossflow schemes. International journal of heat and mass transfer, 48(1), pp.161-170.
- Kanokjaruvijit, K. and Martinez-Botas, R.F., 2004, January. Parametric effects on heat transfer of impingement on dimpled surface. In Turbo Expo: Power for Land, Sea, and Air(Vol. 41685, pp. 77-88).
- Schukin, A.V., Kozlov, A.P. and Agachev, R.S., 1995, June. Study and application of hemispheric cavities for surface heat transfer augmentation. In Turbo Expo: Power for Land, Sea, and Air(Vol. 78811, p. V004T09A034). American Society of Mechanical Engineers.
- Singh, P. and Ekkad, S.V., 2018. Detailed heat transfer measurements of jet impingement on dimpled target surface under rotation. Journal of Thermal Science and Engineering Applications, 10(3).
- Vinze, R., Khade, A., Kuntikana, P., Ravitej, M., Suresh, B., Kesavan, V. and Prabhu, S.V., 2019. Effect of dimple pitch and depth on jet impingement heat transfer over dimpled surface impinged by multiple jets. International Journal of Thermal Sciences, 145, p.105974.
- Wright, D., Craig, K.J., Valluri, P. and Meyer, J.P., 2023. Computational investigation of single and multi-jet array impingement boiling. Applied Thermal Engineering, 218, p.119342.
- Kishan, D.L., Swapnil, S. and Debbarma, A., 2023. CFD Investigation of Rewetting Behavior on a Hot Vertical Plate Surface with Coolant Jet Impingement. In Emerging Trends in Mechanical and Industrial Engineering: Select Proceedings of ICETMIE 2022(pp. 85-97). Singapore: Springer Nature Singapore.
- Rajabi Zargarabadi, M., Rakhsha, S. and Saedodin, S., 2021. Parametric study of the flow characteristics and heat transfer from circular intermittent jet impinging on a concave surface. Journal of Heat and Mass Transfer Research, 8(2), pp.173-186.
- Ataei, M., Tarighi, R., Hajimohammadi, A. and Rajabi Zargarabadi, M., 2017. Heat Transfer under Double Turbulent Pulsating Jets Impinging on a Flat Surface. Journal of Heat and Mass Transfer Research, 4(1), pp.45-52.
- Kline, S.J., 1963. Describing uncertainties in single-sample experiments. Eng., 75, pp.3-8.
- Liu, Z.H. and Wang, J., 2001. Study on film boiling heat transfer for water jet impinging on high temperature flat plate. International Journal of Heat and Mass Transfer, 44(13), pp.2475-2481.
- Seiler-Marie, N., Seiler, J.M. and Simonin, O., 2004. Transition boiling at jet impingement. International journal of heat and mass transfer, 47(23), pp.5059-5070.
- Rohsenow, W.M., 1951. A method of correlating heat transfer data for surface boiling of liquids. Cambridge, Mass.: MIT Division of Industrial Cooporation, [1951].
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