A one-dimensional analytical validated model for predicting temperature distribution, heat transfer, pressure drop, and fluid pumping power in an open-cell metal foam (OCMF) fin is developed. A foam length optimization technique based on its performance factor (PF) is proposed. Every optimized foam\u27s efficiency is shown to be 33.2%, regardless of its pores per inch (PPI) or porosity. Although it can be applied to other porous materials, the model has been illustrated for aluminum foams with 5-40 PPI and 0.88-0.96 porosity (e). The highest PPI, lowest porosity foam gives the best unit area goodness factor uu ¼ jH=f, heat transfer, and heat transfer per unit volume Q_V, while the greatest goodness factor u (heat transfer rate to fluid pump...
Due to their large surface area to volume ration, low density, and high strength structure, aluminum...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Graded foam-filled channels are a very promising solution for improving the thermal performance of h...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
Metal foams are a class of cellular structured materials with open cells randomly oriented and mostl...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
In several research fields, e.g., the miniaturization of electronic components, new solutions for he...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
Due to their large surface-area-to-volume ratio and tortuous structure, metal foams hold promise for...
Thanks to their high effective thermal conductivity, specific surface area, and tortuosity, open-cel...
The thermal performance of several engineering devices, such as heat exchangers, volumetric solar re...
Due to their high porosity, high stiffness, light weight, large surface area-to-volume ratio, and ex...
If made of highly conductive materials, open-cell metal foams are particularly interesting as enhanc...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
In this paper, a model for effective thermal conductivity of high porosity open-cell metal foams is ...
Due to their large surface area to volume ration, low density, and high strength structure, aluminum...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Graded foam-filled channels are a very promising solution for improving the thermal performance of h...
Heat transfer can be enhanced by employing open-cell metal foams which are cellular materials where ...
Metal foams are a class of cellular structured materials with open cells randomly oriented and mostl...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
In several research fields, e.g., the miniaturization of electronic components, new solutions for he...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
Due to their large surface-area-to-volume ratio and tortuous structure, metal foams hold promise for...
Thanks to their high effective thermal conductivity, specific surface area, and tortuosity, open-cel...
The thermal performance of several engineering devices, such as heat exchangers, volumetric solar re...
Due to their high porosity, high stiffness, light weight, large surface area-to-volume ratio, and ex...
If made of highly conductive materials, open-cell metal foams are particularly interesting as enhanc...
This paper reviews the available methods to study thermal applications with open-cell metal foam. Bo...
In this paper, a model for effective thermal conductivity of high porosity open-cell metal foams is ...
Due to their large surface area to volume ration, low density, and high strength structure, aluminum...
Commercial open-cell metal foam has very high porosity (often greater than 90%) and a large surface ...
Graded foam-filled channels are a very promising solution for improving the thermal performance of h...