β-SiC open-cell foams are promising materials for catalytic supports with improved heat and mass transfer at moderate pressure drops. In this work, 3-dimensional (3D) models of a 30 ppi (pores per inch) β-SiC open-cell foam were generated using X-ray microtomography data. The resulting foam models were then used for finite element analysis (FEA) and computational fluid dynamics (CFD) simulations of heat transfer and fluid flow on the pore-scale. The FEA results demonstrate that (i) the overall effective thermal conductivity from direct simulations is comparable to the results estimated by experimental measurement, and are in the order of 10−1 W m−1 K−1 and (ii) thermal transport through fluid-saturated β-SiC foams depends on the solid-to-fl...
Important heat transfer parameters of aluminum foams of varying pore sizes are investigated through ...
AbstractIn this work a combination of micro-CT, image-based modeling and CFD has been applied to inv...
Metallic open-cell foams have proven to be valuable for many engineering applications. Their success...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
The necessity for devising more effective heat transfer technologies and innovative materials, capab...
Nowadays, the need for developing more effective heat transfer technologies and innovative materials...
Open-cell foams are considered a potential candidate as an innovative catalyst support in many proce...
In this work, we combine numerical (CFD) simulations and experimental measurements in a fundamental ...
Open cell foams are considered promising catalytic substrates providing high surface area and a tort...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
Combining low pressure drop and remarkable heat transport properties, open-cell foams offer a combin...
Important heat transfer parameters of aluminum foams of varying pore sizes are investigated through ...
AbstractIn this work a combination of micro-CT, image-based modeling and CFD has been applied to inv...
Metallic open-cell foams have proven to be valuable for many engineering applications. Their success...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
The necessity for devising more effective heat transfer technologies and innovative materials, capab...
Nowadays, the need for developing more effective heat transfer technologies and innovative materials...
Open-cell foams are considered a potential candidate as an innovative catalyst support in many proce...
In this work, we combine numerical (CFD) simulations and experimental measurements in a fundamental ...
Open cell foams are considered promising catalytic substrates providing high surface area and a tort...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
Combining low pressure drop and remarkable heat transport properties, open-cell foams offer a combin...
Important heat transfer parameters of aluminum foams of varying pore sizes are investigated through ...
AbstractIn this work a combination of micro-CT, image-based modeling and CFD has been applied to inv...
Metallic open-cell foams have proven to be valuable for many engineering applications. Their success...