Assuming uniform particulate deposit layer, with deposition layer thickness in the range of 10-400 lm, on the ligaments of a metal foam heat sink, the effects of airborne particle deposition on the steady-state thermohydraulic performance of a metal foam heat sink are examined theoretically. Using a cubic cell model, changes in the foam internal structure, due to deposition, have been theoretically related to the increased pressure drop due to partial blockage of the pores. Our results suggest that the fouled to clean pressure drop ratio is only a function of the ligament to pore diameter ratio. Another interesting observation is that, compared to clean foams, the pressure drop can increase by orders of magnitude depending on the extent to ...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
A numerical model has been developed to study particulate fouling in 2D idealized metal foam heat ex...
Purpose - The purpose of this paper is to clarify the relationship between dust deposition effects o...
Purpose - The purpose of this paper is to clarify the relationship between dust deposition effects o...
Metal foams have gained popularity in the renewable energy industry due to their superior thermo-phy...
In recent years, open-cell metal foam has gained attention for utilization for exhaust gas recircula...
This project provides a steppingstone to comprehend the mechanisms that govern particulate fouling i...
In recent years, open-cell metal foam has gained attention for utilization for exhaust gas recircula...
Curtailing the ever-increasing global energy demand remains an arduous challenge. The U.S. Energy In...
Australia is a high potential country for geothermal power with reserves currently estimated in the ...
The exorbitant costs associated with particulate fouling necessitates the need to formulate advanced...
The exorbitant costs associated with particulate fouling necessitates the need to formulate advanced...
© 2017 Elsevier Ltd The exorbitant costs associated with particulate fouling necessitates the need t...
Multiphase solid-gas flows and particulate fouling in porous media are omnipresent in many environme...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
A numerical model has been developed to study particulate fouling in 2D idealized metal foam heat ex...
Purpose - The purpose of this paper is to clarify the relationship between dust deposition effects o...
Purpose - The purpose of this paper is to clarify the relationship between dust deposition effects o...
Metal foams have gained popularity in the renewable energy industry due to their superior thermo-phy...
In recent years, open-cell metal foam has gained attention for utilization for exhaust gas recircula...
This project provides a steppingstone to comprehend the mechanisms that govern particulate fouling i...
In recent years, open-cell metal foam has gained attention for utilization for exhaust gas recircula...
Curtailing the ever-increasing global energy demand remains an arduous challenge. The U.S. Energy In...
Australia is a high potential country for geothermal power with reserves currently estimated in the ...
The exorbitant costs associated with particulate fouling necessitates the need to formulate advanced...
The exorbitant costs associated with particulate fouling necessitates the need to formulate advanced...
© 2017 Elsevier Ltd The exorbitant costs associated with particulate fouling necessitates the need t...
Multiphase solid-gas flows and particulate fouling in porous media are omnipresent in many environme...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
This paper investigates the heat transfer performance of two 20 PPI (pores per linear inch) aluminum...
A numerical model has been developed to study particulate fouling in 2D idealized metal foam heat ex...