Numerical simulation of facilitated transport of carbon dioxide in a condensate film

Author:

Nozu S.,Inoue S.,Inaba H.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference14 articles.

1. McNaught, J. M.: An assessment of design methods for condensation of vapors from a non-condensing gas, in Heat Exchangers, Theory and Practice (eds. by Taborek, G. F.; Hewitt, G. F.; Afgan, N.), Washington, DC.: Hemisphere Publishing Corp. (1983), 35–53

2. Jensen, M. K.: Condensation with noncondensables and in multicomponent mixtures, in Heat Transfer Equipment Design (eds. Shah, R. K.; Subbarao, E. C.; Mashelkar, R. A.), Washington, DC: Hemisphere Publishing Corp. (1988), 497–512

3. Fujii, T.; Uehara, H.; Mihara, K.: Forced convective condensation in the presence of noncondensables and superheating: Trans. JSME 44-B (1978), 600–607: also Fujii, T.; Mihara, H.: Forced convection condensation in the presence of noncondensables. Rept. Res. Inst. Industrial Science, Kyushu University 71 (1980), 29–35

4. Fujii, T.; Uehara, H.; Mihara, K.; Takashima, H.: Body force convection condensation in the presence of noncondensables. Rept. Res. Inst. Industrial Science, Kyushu University 66 (1977), 53–80

5. Rose, J. W.: Approximate equations for forced convection condensation in the presence of a non-condensing gas on a flat plate and horizontal tube. Int. J. Heat Mass Transfer 23 (1980), 539–546

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