Porous sintered microstructures are critical to the functioning of passive heat transport devices such as heat pipes. The topology and microstructure of the porous wick play a crucial role in determining the thermal performance of such devices. Three sintered copper wick samples employed in commercial heat pipes are characterized in this work in terms of their thermal transport properties-porosity, effective thermal conductivity, permeability, and interfacial heat transfer coefficient. The commercially available samples of nearly identical porosities (similar to 61% open volume) are CT scanned at 5.5 mu m resolution, and the resulting image stack is reconstructed to produce high-quality finite volume meshes representing the solid and inters...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
In this paper, test procedures to measure permeability, pore radius, porosity, and effective thermal...
The principal objective of the current work is to further understand the fundamental fluid and heat ...
Porous sintered microstructures are critical to the functioning of passive heat transport devices su...
Sintered porous structures are ubiquitous as heat transport media for thermal management and other a...
Porous structures formed by sintering of powders, which involves material-bonding under the applicat...
Porous structures formed by sintering of powders, which involves material-bonding under the applicat...
Heat pipes offer passive transport of heat over long distances without incurring a significant drop ...
Heat pipes offer passive transport of heat over long distances without incurring a significant drop ...
This study proposes a novel sintered wick structure called bilateral arch-shaped sintered wick (BASS...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
In this study, the effects of the particle size distribution and packing structure on the permeabili...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
In this paper, test procedures to measure permeability, pore radius, porosity, and effective thermal...
The principal objective of the current work is to further understand the fundamental fluid and heat ...
Porous sintered microstructures are critical to the functioning of passive heat transport devices su...
Sintered porous structures are ubiquitous as heat transport media for thermal management and other a...
Porous structures formed by sintering of powders, which involves material-bonding under the applicat...
Porous structures formed by sintering of powders, which involves material-bonding under the applicat...
Heat pipes offer passive transport of heat over long distances without incurring a significant drop ...
Heat pipes offer passive transport of heat over long distances without incurring a significant drop ...
This study proposes a novel sintered wick structure called bilateral arch-shaped sintered wick (BASS...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
In this study, the effects of the particle size distribution and packing structure on the permeabili...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
Characterization and design of fluid-thermal transport through random porous sintered beds is critic...
In this paper, test procedures to measure permeability, pore radius, porosity, and effective thermal...
The principal objective of the current work is to further understand the fundamental fluid and heat ...