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Numerical Investigation of Forced Convection Heat Transfer for Different Models of PPFHS Heatsinks

Publish Year: 1401
Type: Journal paper
Language: English
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JR_ADMTL-15-4_005

Index date: 23 May 2023

Numerical Investigation of Forced Convection Heat Transfer for Different Models of PPFHS Heatsinks abstract

In his research article, several models of heatsink were optimally designed in fin length, width and height along with pin placement which consists of 4 pin fin heatsink models heatsink (including square with different pin angles, circular, truncated cone, and cone pin heatsinks and one model of the plate-fin heatsink (PFHS)) in order to achieve better thermal performance as well as less energy consumption and were numerically investigated under high air velocity and heat fluxes. Different parameters such as peak temperature, Nusselt number, heat resistance, pressure drop, and energy consumption were compared. The results show that the square PPFHS with the pin angle of 45 degrees has the highest thermal performance compared to the rest of the models while also having the highest pressure drop and energy consumption between the models consuming more than 255 and 358 percent more energy in order to have the same air velocity in the pathway, while the truncated and the fully formed cone model despite having 25% and 30% less thermal performance, have the least pressure drop between the pin models of the heatsinks and therefore consume the least energy out of the PPFHS.

Numerical Investigation of Forced Convection Heat Transfer for Different Models of PPFHS Heatsinks Keywords:

Numerical Investigation of Forced Convection Heat Transfer for Different Models of PPFHS Heatsinks authors

Soheil Sadrabadi Haghighi

Department of Mechanical Engineering, Mashhad Branch, Islamic Azad University, Mashhad, Iran

hamidreza goshayeshi

Department of Mechanical Engineering, Mashhad Branch, Islamic Azad University, Mashhad, Iran

Iman Zahmatkesh

Department of Mechanical Engineering, Mashhad Branch, Islamic Azad University, Mashhad, Iran

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