Pages that link to "Item:Q1429725"
From MaRDI portal
The following pages link to Flow and heat transfer characteristics of the evaporating extended meniscus in a micro-capillary channel. (Q1429725):
Displaying 18 items.
- Numerical investigation of heat and mass transfer from an evaporating meniscus in a heated open groove (Q549403) (← links)
- New boundary conditions for the evaporating thin-film model in a rectangular micro channel (Q550791) (← links)
- Effects of superheat and temperature-dependent thermophysical properties on evaporating thin liquid films in microchannels (Q631183) (← links)
- Numerical study of conjugated heat transfer in evaporating thin-films near the contact line (Q765574) (← links)
- Transport from a volatile meniscus inside an open microtube (Q929836) (← links)
- Comprehensive experimental and theoretical study of fluid flow and heat transfer in a microscopic evaporating meniscus in a miniature heat exchanger (Q955573) (← links)
- Steady evaporating flow in rectangular microchannels (Q981314) (← links)
- Capillary-assisted flow and evaporation inside circumferential rectangular micro groove (Q1008051) (← links)
- Transport phenomena in the thin-film region of a micro-channel (Q1420574) (← links)
- Analysis of film condensation heat transfer inside a vertical micro tube with consideration of the meniscus draining effect. (Q1429726) (← links)
- Effects of radius and heat transfer on the profile of evaporating thin liquid film and meniscus in capillary tubes. (Q1598338) (← links)
- Analytical solutions of heat transfer and film thickness with slip condition effect in thin-film evaporation for two-phase flow in microchannel (Q1665495) (← links)
- Numerical investigation of an evaporating meniscus in a channel (Q1948924) (← links)
- Heat transfer model for evaporation in microchannels. I: Presentation of the model (Q2486358) (← links)
- Effects of the liquid polarity and the wall slip on the heat and mass transport characteristics of the micro-scale evaporating transition film (Q2494686) (← links)
- Characteristics of an evaporating thin film in a microchannel (Q2641835) (← links)
- Experimental investigation of self-induced thermocapillary convection for an evaporating meniscus in capillary tubes using micro–particle image velocimetry (Q3555015) (← links)
- Capillary flow of evaporating liquid solutions in open rectangular microchannels (Q5065068) (← links)