Direct simulation of thermal transport in open-cell metal foams is conducted using different periodic unit-cell geometries. The periodic unit-cell structures are constructed by assuming the pore space to be spherical and subtracting the pore space from a unit cube of the metal. Different types of packing arrangement for spheres are considered—body centered cubic, face centered cubic, and the A15 lattice (similar to a Weaire-Phelan unit cell)—which give rise to different foam structures. Effective thermal conductivity, pressure drop, and Nusselt number are computed by imposing periodic boundary conditions for aluminum foams saturated with air or water. The computed values compare well with existing experimental measurements and semiempirical...
In this paper, anisotropy and RVE for the effective thermal conductivity of open-cell metal foams ar...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
International audienceThe thermo-physical behavior of open-celled metal foams depends on their micro...
Direct simulation of thermal transport in open-cell metal foams is conducted using different periodi...
Flows in porous media may be modeled using two major classes of approaches: (a) a macroscopic approa...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
Recent advances in cellular materials for active thermal management applications involve the integra...
In this paper, a model for effective thermal conductivity of high porosity open-cell metal foams is ...
In the applications of metal foams, the knowledge of the thermal transport properties is of primary ...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
AbstractThe study on the heat transfer mechanisms through the aluminium foam with a fluid in void ce...
The heat dissipation capability of highly porous cellular metal foams with open cells subject to for...
In this thesis analytical and numerical investigations of fluid flow and heat transfer through open ...
Open cell metal foams increasingly find lots of applications in modern energy systems. For example, ...
Effective thermal conductivity (ETC) is a considerable thermo-physical property in design, manufactu...
In this paper, anisotropy and RVE for the effective thermal conductivity of open-cell metal foams ar...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
International audienceThe thermo-physical behavior of open-celled metal foams depends on their micro...
Direct simulation of thermal transport in open-cell metal foams is conducted using different periodi...
Flows in porous media may be modeled using two major classes of approaches: (a) a macroscopic approa...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
Recent advances in cellular materials for active thermal management applications involve the integra...
In this paper, a model for effective thermal conductivity of high porosity open-cell metal foams is ...
In the applications of metal foams, the knowledge of the thermal transport properties is of primary ...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
AbstractThe study on the heat transfer mechanisms through the aluminium foam with a fluid in void ce...
The heat dissipation capability of highly porous cellular metal foams with open cells subject to for...
In this thesis analytical and numerical investigations of fluid flow and heat transfer through open ...
Open cell metal foams increasingly find lots of applications in modern energy systems. For example, ...
Effective thermal conductivity (ETC) is a considerable thermo-physical property in design, manufactu...
In this paper, anisotropy and RVE for the effective thermal conductivity of open-cell metal foams ar...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
International audienceThe thermo-physical behavior of open-celled metal foams depends on their micro...