A quasi one-dimensional method and results for steady annular/stratified shear and gravity driven condensing flows
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Publication:550809
DOI10.1016/j.ijheatmasstransfer.2011.03.008zbMath1219.80078OpenAlexW2092804604MaRDI QIDQ550809
Publication date: 13 July 2011
Published in: International Journal of Heat and Mass Transfer (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijheatmasstransfer.2011.03.008
annular condensing flowsin-channel and in-tube condensing flowsmicro-meter scale condensing flowsshear and gravity driven condensing flows
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Cites Work
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- Effects of exit-condition, gravity, and surface-tension on stability and noise-sensitivity issues for steady condensing flows inside tubes and channels
- Forced flow laminar filmwise condensation of a pure saturated vapor in a vertical tube
- Interfacial shear models and their required asymptotic form for annular/stratified film condensation flows in inclined channels and vertical pipes
- Direct Computational Simulations for Internal Condensing Flows and Results on Attainability/Stability of Steady Solutions, Their Intrinsic Waviness, and Their Noise Sensitivity
- Nonlinear Stability of the Classical Nusselt Problem of Film Condensation and Wave Effects
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