Abstract Thin film evaporation is a widely-used thermal management solution for micro/nano-devices with high energy densities. Local measurements of the evaporation rate at a liquid-vapor interface, however, are limited. We present a continuous profile of the evaporation heat transfer coefficient ( $$h_{\text {evap}}$$ h evap ) in the submicron thin film region of a water meniscus obtained through local measurements interpreted by a machine learned surrogate of the physical system. Frequency domain thermoreflectance (FDTR), a non-contact laser-based method with micrometer lateral resolution, is used to induce and measure the meniscus evaporation. A neural network is then trained using finite element simulations to extract the $$h_{\text {ev...
An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model a...
Evaporation from a meniscus of heptane liquid in a V-groove geometry is experimentally investigated....
Advancement in high-performance photonics/electronics devices has boosted generated thermal energy, ...
Thin-film evaporation from a meniscus in a confined space, which is the basis for many two-phase coo...
The basis of operation for two-phase devices such as heat pipes and vapor chambers is phase change h...
Thin-film evaporation from a meniscus in a confined space, which is the basis for many two-phase coo...
A mathematical model is developed to describe the micro/nano-scale fluid flow and heat/mass transfer...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
In order to enhance the fundamental understanding of thin film evaporation and thereby improve the c...
Evaporation is a fundamental and core phenomenon in a broad range of disciplines including power gen...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
A microscale temperature measurement technique was used to investigate the heat transfer at an evapo...
Evaporative cooling of small, high power dissipating devices using thin liquid films is becoming an...
Recent advancements in integrated circuits demand the development of novel thermal management scheme...
Evaporation studies are focused on unraveling heat transfer and flow dynamics near the solid–liquid–...
An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model a...
Evaporation from a meniscus of heptane liquid in a V-groove geometry is experimentally investigated....
Advancement in high-performance photonics/electronics devices has boosted generated thermal energy, ...
Thin-film evaporation from a meniscus in a confined space, which is the basis for many two-phase coo...
The basis of operation for two-phase devices such as heat pipes and vapor chambers is phase change h...
Thin-film evaporation from a meniscus in a confined space, which is the basis for many two-phase coo...
A mathematical model is developed to describe the micro/nano-scale fluid flow and heat/mass transfer...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
In order to enhance the fundamental understanding of thin film evaporation and thereby improve the c...
Evaporation is a fundamental and core phenomenon in a broad range of disciplines including power gen...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cata...
A microscale temperature measurement technique was used to investigate the heat transfer at an evapo...
Evaporative cooling of small, high power dissipating devices using thin liquid films is becoming an...
Recent advancements in integrated circuits demand the development of novel thermal management scheme...
Evaporation studies are focused on unraveling heat transfer and flow dynamics near the solid–liquid–...
An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model a...
Evaporation from a meniscus of heptane liquid in a V-groove geometry is experimentally investigated....
Advancement in high-performance photonics/electronics devices has boosted generated thermal energy, ...