The aim of this work is to estimate the local heat flux and heat transfer coefficient for the case of evaporation of thin liquid film deposited on capillary heated channel: it plays a fundamental role in the two-phase heat transfer processes inside mini-channels. In the present analysis it is investigated a semi-infinite slug flow (one liquid slug followed by one single vapour bubble) in a heated capillary copper tube. The estimation procedure here adopted is based on the solution of the inverse heat conduction problem within the wall domain adopting, as input data, the temperature field on the external tube wall acquired by means of infrared thermography
With the increasing demand for improved electronics cooling, thermal management and cooling techniqu...
Two-phase passive heat transport devices such as vapor chambers, loop heat pipes, and capillary pump...
A promising solution in the field of passive two-phase heat transfer devices is represented by Pulsa...
In this paper we report experimental results on evaporation of a volatile wetting liquid in a capill...
This paper presents the current research on heat transfer at a sprinkled tube bundle consisting of s...
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...
International audienceThis article presents the experimental, numerical, and inverse heat conduction...
Efficient evaporation of water at low temperatures is challenging due to its low saturation pressure...
The present paper presents the application of an inverse analysis approach to experimental infrared ...
Capillary-assisted thin-film evaporation has attracted increased attention recently to efficiently e...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
This paper presents an experimental study of the local heat transfer coefficient in evaporation and ...
An experimental study is conducted to investigate the local heat flow at a solid--liquid--vapor cont...
The subject of the present work is heat transfer close to moving three-phase contact lines. The term...
With the increasing demand for improved electronics cooling, thermal management and cooling techniqu...
Two-phase passive heat transport devices such as vapor chambers, loop heat pipes, and capillary pump...
A promising solution in the field of passive two-phase heat transfer devices is represented by Pulsa...
In this paper we report experimental results on evaporation of a volatile wetting liquid in a capill...
This paper presents the current research on heat transfer at a sprinkled tube bundle consisting of s...
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...
International audienceThis article presents the experimental, numerical, and inverse heat conduction...
Efficient evaporation of water at low temperatures is challenging due to its low saturation pressure...
The present paper presents the application of an inverse analysis approach to experimental infrared ...
Capillary-assisted thin-film evaporation has attracted increased attention recently to efficiently e...
Heat pipes, vapor chambers and thermosyphons are examples of two-phase devices used in electronics c...
This paper presents an experimental study of the local heat transfer coefficient in evaporation and ...
An experimental study is conducted to investigate the local heat flow at a solid--liquid--vapor cont...
The subject of the present work is heat transfer close to moving three-phase contact lines. The term...
With the increasing demand for improved electronics cooling, thermal management and cooling techniqu...
Two-phase passive heat transport devices such as vapor chambers, loop heat pipes, and capillary pump...
A promising solution in the field of passive two-phase heat transfer devices is represented by Pulsa...