A numerical technique is described by which the solution of the equations of steady axisymmetric flow of a viscous incompressible fluid in any orthogonal system of coordinates can be obtained. In the present analysis the equations of motion and the boundary conditions are approximated by finite diff
Numerical simulation for steady annular condensation flow in triangular microchannels
โ Scribed by Yongping Chen; Jiafeng Wu; Mingheng Shi; G.P. Peterson
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 396 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0735-1933
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โฆ Synopsis
A steady one-dimensional model for annular condensation flow in triangular microchannels is developed. The curvature radius distribution of the condensate stream along the channel has been determined numerically. The results indicate that the curvature radius of the liquid phase would increase rapidly at the beginning, and then as the condensation process progresses along the length of the microchannels, the radius increase would proceed more slowly. At the end of the condensation flow, the radius increases rapidly again. A smaller contact angle and heat flux or a larger hydraulic diameter and steam pressure will all result in a longer condensation length.
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