Prediction of stagnation point heat transfer for a single round jet impinging on a concave hemispherical surface

Author:

Brahma R. K.,Padhy I.,Pradhan B.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference20 articles.

1. Vallies, E. A.; Patrick, M. A.; Wragg, A. A.: Radial distribution of convective heat transfer coefficient between an axisymmetric turbulent jet and a flat plate held normal to the flow. Proc. of 6th Int. Heat Transfer-Conference, Toronto, Canada 5 (1978) 297–303

2. Martin, H.: Heat and mass transfer between impinging gas jets and solid surfaces. Adv. Heat Transfer 13 (1977) 1–60

3. Livingwood, J. N. B.; Hrycak, P.: Impingement heat transfer from turbulent air jets to flat plates — A literature survey. NASA TM X-2778 (1983) 1–43

4. Obot, N. T.; Mujumdar, A. S.; Douglas, W. J. M.: The effect of nozzle geometry on impingement heat transfer under a round turbulent jet. Heat Transfer Division of ASME. Winter Annual Meeting, New York (1979) 1–12

5. Nakatogawa, T.; Nishiwahi, H.; Hirata, M.; Torri, K.: Heat transfer of round turbulent jet impinging normally on flat plate. Proc. of 4th Int. Heat Transfer - Conference, Paris-Versailles 11 (1970) FC 5.2

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