We investigate the role of interfacial slip on evaporation of a thin liquid film in a microfluidic channel. The effective slip mechanism is attributed to the formation of a depleted layer adhering to the substrate–fluid interface, either in a continuum or in a rarefied gas regime, as a consequence of intricate hydrophobic interactions in the narrow confinement. We appeal to the fundamental principles of conservation in relating the evaporation mechanisms with fluid flow and heat transfer over interfacial scales. We obtain semi-analytical solutions of the pertinent governing equations, with coupled heat and mass transfer boundary conditions at the liquid–vapor interface. We observe that a general consequence of interfacial slip is to elongat...
Evaporating thin liquid films, so called microlayers, are of particular importance to two phase heat...
Structured (in particular, micro- and minigrooved) wall surfaces may improve numerous industrial pro...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
Physics of thin film evaporation plays a critical role in designing highly efficient micro-scale the...
Physical and mathematical model has been developed to predict the two-phase flow and heat transfer i...
A theoretical study has been undertaken to determine the rate of heat transfer in a thin evaporating...
The development of compact, advanced cooling technology leads to problems involving two-phase flows ...
An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model a...
Transport characteristics of evaporating thin liquid films in nanopores play a critical role in desi...
A mathematical model is developed to describe the micro-/nano-scale fluid flow and heat/mass transfe...
Evaporation in a heat pipe occurs at a liquid-vapor interface within the micropores of the heat pipe...
A mathematical model is developed to describe the micro/nano-scale fluid flow and heat/mass transfer...
Thin film evaporation of multi-component fluids in microchannels is important in many industrial app...
Flow boiling through microchannels is characterized by nucleation and growth of vapor bubbles that f...
Flow boiling through microchannels is characterized by nucleation and growth of vapor bubbles that f...
Evaporating thin liquid films, so called microlayers, are of particular importance to two phase heat...
Structured (in particular, micro- and minigrooved) wall surfaces may improve numerous industrial pro...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
Physics of thin film evaporation plays a critical role in designing highly efficient micro-scale the...
Physical and mathematical model has been developed to predict the two-phase flow and heat transfer i...
A theoretical study has been undertaken to determine the rate of heat transfer in a thin evaporating...
The development of compact, advanced cooling technology leads to problems involving two-phase flows ...
An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model a...
Transport characteristics of evaporating thin liquid films in nanopores play a critical role in desi...
A mathematical model is developed to describe the micro-/nano-scale fluid flow and heat/mass transfe...
Evaporation in a heat pipe occurs at a liquid-vapor interface within the micropores of the heat pipe...
A mathematical model is developed to describe the micro/nano-scale fluid flow and heat/mass transfer...
Thin film evaporation of multi-component fluids in microchannels is important in many industrial app...
Flow boiling through microchannels is characterized by nucleation and growth of vapor bubbles that f...
Flow boiling through microchannels is characterized by nucleation and growth of vapor bubbles that f...
Evaporating thin liquid films, so called microlayers, are of particular importance to two phase heat...
Structured (in particular, micro- and minigrooved) wall surfaces may improve numerous industrial pro...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...