TY - JOUR
T1 - Experimental and numerical study on the performance of passive heat sink having alternating layout
AU - Chu, Wen Xiao
AU - Lin, Yu Chieh
AU - Chen, Ching-Yao
AU - Wang, Chi-Chuan
PY - 2019/6/1
Y1 - 2019/6/1
N2 - In this study, a novel passive heat sink with triangular fins having alternating layout to promote heat transfer performance of a passive heat sink is proposed and verified by experimental and numerical examinations. The heat sinks with rectangular fins (case A), triangular fins with right angle, 90° (case B), triangular fins with right angle having alternating layout (case C), triangular fins with obtuse angle of 120° (case D) and triangular fins with obtuse angle of 120° having alternating layout (case E) are tested with vacuum pressure ranging from 400 Pa to atmosphere pressure. It is indicated that the triangular fin having alternating layout offer some benefits like entraining more airflow into the heat sink and a higher effective view factor, thereby showing an appreciable increase of effective heat transfer coefficient (HTC). Results obtained in low vacuum pressure show that the effective HTC of cases B, C, D and E can be improved by 1.5%, 5.5%, 3.0% and 12.1%, respectively as compared to the reference case A. Yet the effective HTC can be improved by 3.2%, 6.1%, 4.6% and 13.0%, respectively in atmosphere pressure. The numerical study is in line with the experimental results and the simulations suggest that the optimum angle of the proposed triangular fins having alternating layout can improve the effective HTC by up to 14.6% and 16.0% with obtuse angles of 150° and 140° when fin area is 2000 mm2 and 3000 mm2, respectively. The benefits of triangular fins having alternating layout show even more superior performance when the heat sink is placed vertically and the effective heat transfer coefficient for triangular fins having alternating layout with 150° is improved by up to 20.3%.
AB - In this study, a novel passive heat sink with triangular fins having alternating layout to promote heat transfer performance of a passive heat sink is proposed and verified by experimental and numerical examinations. The heat sinks with rectangular fins (case A), triangular fins with right angle, 90° (case B), triangular fins with right angle having alternating layout (case C), triangular fins with obtuse angle of 120° (case D) and triangular fins with obtuse angle of 120° having alternating layout (case E) are tested with vacuum pressure ranging from 400 Pa to atmosphere pressure. It is indicated that the triangular fin having alternating layout offer some benefits like entraining more airflow into the heat sink and a higher effective view factor, thereby showing an appreciable increase of effective heat transfer coefficient (HTC). Results obtained in low vacuum pressure show that the effective HTC of cases B, C, D and E can be improved by 1.5%, 5.5%, 3.0% and 12.1%, respectively as compared to the reference case A. Yet the effective HTC can be improved by 3.2%, 6.1%, 4.6% and 13.0%, respectively in atmosphere pressure. The numerical study is in line with the experimental results and the simulations suggest that the optimum angle of the proposed triangular fins having alternating layout can improve the effective HTC by up to 14.6% and 16.0% with obtuse angles of 150° and 140° when fin area is 2000 mm2 and 3000 mm2, respectively. The benefits of triangular fins having alternating layout show even more superior performance when the heat sink is placed vertically and the effective heat transfer coefficient for triangular fins having alternating layout with 150° is improved by up to 20.3%.
KW - Alternating layout
KW - Heat sink
KW - Natural convection
KW - Radiation
KW - Triangular fins
UR - http://www.scopus.com/inward/record.url?scp=85061542992&partnerID=8YFLogxK
U2 - 10.1016/j.ijheatmasstransfer.2019.02.034
DO - 10.1016/j.ijheatmasstransfer.2019.02.034
M3 - Article
AN - SCOPUS:85061542992
VL - 135
SP - 822
EP - 836
JO - International Journal of Heat and Mass Transfer
JF - International Journal of Heat and Mass Transfer
SN - 0017-9310
ER -