Micro-post wick is a promising candidate for high-heat-flux applications due to its compatibility, high conductivity and permeability. In this study, the capillary performances of micro-post wicks of various configurations are investigated. Five types of micro-post wicks which have dual-scale pore structure (parallel, quadratic, hexagonal, diamond, and periodic) are considered and the capillary performance is compared with micro-post wicks of uniform array. The capillary performance of wicks is characterized using capillary rate of rise experiments and numerical simulations that accounts for the finite curvatures of liquid menisci. From the experimental and numerical studies, it is shown that the capillary performance of multi-scale wicks i...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
Heat pipes and other heat transfer applications use capillary-driven liquid motion to enhance perfor...
In this study, the capillary performance of the micro-post wicks with non-homogeneous configurations...
The capillary performance (K/R-eff) of the wick is a key design parameter for the thermal performanc...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
In this article, an advanced cooling surface based on micro-post arrays with non-homogeneous configu...
Micro-post wick is a promising candidate for liquid-based thermal management of future electronics a...
This paper examines the so-called capillary performance of a freeform porous structure fabricated by...
Presented here is the second of a two-part investigation, designed to systematically iden-tify and i...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The principal objective of the current work is to further understand the fundamental fluid and heat ...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
Heat pipes and other heat transfer applications use capillary-driven liquid motion to enhance perfor...
In this study, the capillary performance of the micro-post wicks with non-homogeneous configurations...
The capillary performance (K/R-eff) of the wick is a key design parameter for the thermal performanc...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
In this article, an advanced cooling surface based on micro-post arrays with non-homogeneous configu...
Micro-post wick is a promising candidate for liquid-based thermal management of future electronics a...
This paper examines the so-called capillary performance of a freeform porous structure fabricated by...
Presented here is the second of a two-part investigation, designed to systematically iden-tify and i...
The thermal and hydrodynamic performance of passive two-phase cooling devices such as heat pipes and...
The principal objective of the current work is to further understand the fundamental fluid and heat ...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
The topology and geometry of microstructures play a crucial role in determining their heat transfer ...
Heat pipes and other heat transfer applications use capillary-driven liquid motion to enhance perfor...