기공률에 따른 발포 알루미늄의 열전달 성능 연구

A study on the heat transfer performance of aluminum foam by pore density

초록

Heat transfer performance of an aluminum foam by porosity was investigated. Thermal conductivity was measured by the relative comparison technique which is one of the KS standard thermal conductivity measuring methods. Based on experimental results, modified scaling relationship model, respectively determined from the solid and fluid conduction mechanisms corresponding to the metal-wall and air, was suggested to represent the porosity effect on heat transfer property. By evaluating the effective thermal conductivity of the aluminum foam with pore density of 0.87, the existing scaling relationship model showed 3.83 W/m·K, and newly developed model was 1.14 W/m·K. Based on the prediction with experimental data of 1.40 W/m·K for the case, it was confirmed that the modified scaling relationship model described much more effectively the heat transfer property of the material.

키워드

Aluminum foam(발포 알루미늄)Pore density(기공률)Solid conduction(고체 열전도)Fluid conduction(유체 열전도)Effective thermal conductivity(유효 열전도율)
제목
기공률에 따른 발포 알루미늄의 열전달 성능 연구
제목 (타언어)
A study on the heat transfer performance of aluminum foam by pore density
저자
이진원김태원
발행일
2013-12
유형
Proceeding
저널명
대한기계학회 2013년도 학술대회
페이지
2860 ~ 2865