Influence of Test Tube Material on Subcooled Flow Boiling Critical Heat Flux in Short Vertical Tube

Author:

HATA Koichi1,SHIOTSU Masahiro2,NODA Nobuaki3

Affiliation:

1. Institute of Advanced Energy, Kyoto University

2. Kyoto University

3. National Institute for Fusion Science

Publisher

Japan Society of Mechanical Engineers

Reference29 articles.

1. (1) Divavin, V. A., Grigoriev, S. A., and Tanchuk, V. N., High Heat Flux Experiments on Mock-ups with Porous Coating on the Inner Surface of Circular Coolant Channels, Proceedings of the ASME Heat Transfer Division, HTD-Vol. 317-1, 1995 IMECE, (1995), pp. 143-148.

2. (2) Kubota, Y., Noda, N., Sagara, A., Komori, A., Inoue, N., Akaishi, K., Suzuki, H., Ohyabu, N., and Motojima, O., Development of High Heat Flux Components in Large Helical Device (LHD, Proceedings of the ASME Heat Transfer Division, HTD-Vol. 317-1, 1995 IMECE, (1995), pp. 159-163.

3. (3) Boscary, J., Araki, M., and Akiba, M., Analysis of the JAERI Critical Heat Flux Data Base for Fusion Application, JAERI-Research 97-053, Japan Atomic Energy Research Institute, (1997), pp. 1-50.

4. (4) Boyd, R. D., Ekhlassi, A., Cofie, P., and Zhang, H., High Heat Flux Removal from a Single-side Heated Monoblock Using Flow Boiling, International Journal of Heat and Mass Transfer, Vol. 47, (2004), pp. 2183-2189.

5. (5) Bergles, A. E., Subcooled Burnout in Tubes of Small Diameter, ASME Paper No. 63-WA-182, (1963), pp. 1-9.

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