This study investigates the effect of airflow (in the range of 0–70 m s-1) on the pressure-drop characteristics for a novel multi-layered, nickel-based porous metal, as a function of thickness (affected by sectioning) and density (affected by compression). In addition to generating unique data for these materials, the study highlights the need for precise pinpointing of the different flow regimes (Darcy, Forchheimer and Turbulent) in order to enable accurate determination of the permeability (K) and form drag coefficient (C) defined by the Forchheimer equation and to understand the complex dependence of length-normalised pressure drop on sample thickness
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
This study investigates the effect of airflow (in the range of 0textendash70 m s-1) on the pressure-...
This study investigates the effect of airflow (in the range of 0–70 m s-1) on the pressure-drop char...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
Detailed structural characterization and experimental measurement of airflow across open-celled alum...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
In this paper, a series of experimental data about the role of the metal foam thickness on the total...
In this paper, a series of experimental data about the role of the metal foam thickness on the total...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...
This study investigates the effect of airflow (in the range of 0textendash70 m s-1) on the pressure-...
This study investigates the effect of airflow (in the range of 0–70 m s-1) on the pressure-drop char...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
This study investigates the pressure-drop behaviour associated with airflow through bulk and structu...
Detailed structural characterization and experimental measurement of airflow across open-celled alum...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
In this paper, a series of experimental data about the role of the metal foam thickness on the total...
In this paper, a series of experimental data about the role of the metal foam thickness on the total...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Experimental measurements of the pressure drop across porous metals have been compared with computat...
The development and validation of a grid-based pore-scale numerical modelling methodology applied to...