The influence of dynamic contact angle on flow boiling in vertical ducts is investigated based on the phase-change lattice Boltzmann method (LBM). To verify the correctness of the model, the surface tension of bubbles is calculated by the Laplace law and compared with the actual values. The influence of different contact angle on flow boiling is discussed. The mechanisms of bubble growth time and bubble waiting time on different contact angle surfaces are discussed. The heat transfer coefficient of different surfaces is investigated. The simulation results show that the boiling heat transfer characteristics on hydrophilic surface is better than that on hydrophobic surface
International audienceOver the past eighty years, bubble release during heterogeneous boiling has be...
It is well–known that the physical and chemical properties of a heat exchange surface, especially we...
Microchannel flow boiling is a cooling method studied in microscale heat-cooling, which has become a...
Heat transfer and flow pattern of flow boiling in vertical tube are investigated numerically based o...
Decades of prior study has yet to fully disentangle the complex transport mechanisms that are attrib...
International audienceCritical heat flux (CHF) in pool boiling experiments corresponds to the heat f...
As one of the main factors, surface wettability significantly affects flow boiling characteristics. ...
Surface wettability is recognized as playing an important role in pool boiling and the corresponding...
<div><p>Surface wettability is recognized as playing an important role in pool boiling and the corre...
This paper reports boiling experiments with pure water and surfactant solutions of SDS on horizontal...
Surface modification technology by controlling the surface wettability or applying micro/nano-struct...
The process of flow boiling within micro-passages plays a very important role in many industrial app...
A hybrid thermal lattice Boltzmann (LB) model is presented to simulate thermal multiphase flows with...
In order to investigate single bubble evolution, a boiling phase change model in subcooled flow boil...
This study focuses on the detailed description of the heat transfer and bubble dynamics processes oc...
International audienceOver the past eighty years, bubble release during heterogeneous boiling has be...
It is well–known that the physical and chemical properties of a heat exchange surface, especially we...
Microchannel flow boiling is a cooling method studied in microscale heat-cooling, which has become a...
Heat transfer and flow pattern of flow boiling in vertical tube are investigated numerically based o...
Decades of prior study has yet to fully disentangle the complex transport mechanisms that are attrib...
International audienceCritical heat flux (CHF) in pool boiling experiments corresponds to the heat f...
As one of the main factors, surface wettability significantly affects flow boiling characteristics. ...
Surface wettability is recognized as playing an important role in pool boiling and the corresponding...
<div><p>Surface wettability is recognized as playing an important role in pool boiling and the corre...
This paper reports boiling experiments with pure water and surfactant solutions of SDS on horizontal...
Surface modification technology by controlling the surface wettability or applying micro/nano-struct...
The process of flow boiling within micro-passages plays a very important role in many industrial app...
A hybrid thermal lattice Boltzmann (LB) model is presented to simulate thermal multiphase flows with...
In order to investigate single bubble evolution, a boiling phase change model in subcooled flow boil...
This study focuses on the detailed description of the heat transfer and bubble dynamics processes oc...
International audienceOver the past eighty years, bubble release during heterogeneous boiling has be...
It is well–known that the physical and chemical properties of a heat exchange surface, especially we...
Microchannel flow boiling is a cooling method studied in microscale heat-cooling, which has become a...