The development and validation of a grid-based pore-scale numerical modelling methodology applied to five different commercial metal foam samples is described. The 3-D digital representation of the foam geometry was obtained by the use of X-ray microcomputer tomography scans, and macroscopic properties such as porosity, specific surface and pore size distribution are directly calculated from tomographic data. Pressure drop measurements were performed on all the samples under a wide range of flow velocities, with focus on the turbulent flow regime. Airflow pore-scale simulations were carried out solving the continuity and Navier–Stokes equations using a commercial finite volume code. The feasibility of using Reynolds-averaged Navier–Stokes m...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
Due to their high porosity, high stiffness, light weight, large surface area-to-volume ratio, and ex...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Because of their light weight, open porosity, high surface area per unit volume, and thermal charact...
Because of their light weight, open porosity, high surface area per unit volume, and thermal charact...
Open-cell metal foams are used in a growing number of applications like lightweight porous structure...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
Due to their high porosity, high stiffness, light weight, large surface area-to-volume ratio, and ex...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Because of their light weight, open porosity, high surface area per unit volume, and thermal charact...
Because of their light weight, open porosity, high surface area per unit volume, and thermal charact...
Open-cell metal foams are used in a growing number of applications like lightweight porous structure...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Their light weight, open porosity, high surface area per unit volume and thermal characteristics mak...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...