EN
Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location
Öz
We need a uniform temperature distribution for obtaining higher performances from electronic devices. For cooling,
mini-channel cold plates with coolant flow use electronic devices such as Li-ion battery cells and electronic chips. In
this study, two different inlet locations were studied for the thermal management of a plate with constant heat
generation. A commercial computational fluid dynamic software (Ansys-Fluent) was used for the simulation of Minichannel
cold plates with coolant flow and thus pressure drop, temperature and velocity distribution were investigated
numerically. The effect of inlet location on heat transfer and temperature distribution was studied for laminar flow at
two different Reynolds number (Re=500 and Re=1000). Water was used for the coolant flow of the cooling system.
The numerical results show that changing inlet location causes temperature distribution to change at the same number
of coolant channels in a cold plate.
Anahtar Kelimeler
Kaynakça
- REFERENCES [1] Baek, S.M., Yu, S.H., Namc, J. H. (2011). A Numerical Study on Uniform Cooling of Large-Scale PEMFCs with Different Coolant Flow Field Designs, Applied Thermal Engineering, 31, 1427-1434. [2] Derby, M., Lee, H. J., Peles, Y., Jensen, M. K. (2012). Condensation heat transfer in square, triangular, and semicircular mini-channels, International Journal of Heat and Mass Transfer, 55, 187–197. [3] Ye, L., Tong, M.W., Zeng, X. (2009). Design and analysis of multiple parallel-pass condensers, International Journal of Refrigeration, 32, 1153 – 1161. [4] Jarrett, A., II Yong, K. (2011). Design optimization of electric vehicle battery cooling plates for thermal performance, Journal of Power Sources, 196,10359-10368. [5] Panchal, S., Khasow, R., Dincer I., Agelin-Chaab M., Fraser R., Fowler M. (2017). Thermal Design and Simulation of Mini-channel Cold Plate for Water Cooled Large Sized Prismatic Lithium-ion Battery, Applied Thermal Engineering, 122, 80–90. [6] Yenigün, O., Çetkin, E. (2016). Experimental and Numerical Investigation of Constructal Vascular Channels for Self-cooling: Parallel Channels, Tree-shaped and Hybrid designs, International Journal of Heat and Mass Transfer, 103,1155–1165. [7] Kurnia, J.C., Sasmito, A.P. (2011). Numerical Investigation of Laminar Heat Transfer Performance of Various Cooling Channel Design, Applied Thermal Engineering, 31, 1293-1304. [8] Yutao, H., Zhonghao, R., Xinjian, L., Jiateng Z. (2015). Investigation of Power Battery Thermal Management by Using Mini-channel Cold Plate, Energy Conversion and Management, 89, 387–395.
Ayrıntılar
Birincil Dil
İngilizce
Konular
-
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
18 Ocak 2018
Gönderilme Tarihi
24 Kasım 2017
Kabul Tarihi
25 Aralık 2017
Yayımlandığı Sayı
Yıl 2018 Cilt: 8 Sayı: 1
APA
Tabatabaeı Malazı, M., Sensoy, S., & Heperkan, H. A. (2018). Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location. International Journal of Electronics Mechanical and Mechatronics Engineering, 8(1), 1529-1535. https://izlik.org/JA56ZJ59YK
AMA
1.Tabatabaeı Malazı M, Sensoy S, Heperkan HA. Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location. IJEMME. 2018;8(1):1529-1535. https://izlik.org/JA56ZJ59YK
Chicago
Tabatabaeı Malazı, Mahdi, Suha Sensoy, ve Hasan Alpay Heperkan. 2018. “Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location”. International Journal of Electronics Mechanical and Mechatronics Engineering 8 (1): 1529-35. https://izlik.org/JA56ZJ59YK.
EndNote
Tabatabaeı Malazı M, Sensoy S, Heperkan HA (01 Ocak 2018) Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location. International Journal of Electronics Mechanical and Mechatronics Engineering 8 1 1529–1535.
IEEE
[1]M. Tabatabaeı Malazı, S. Sensoy, ve H. A. Heperkan, “Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location”, IJEMME, c. 8, sy 1, ss. 1529–1535, Oca. 2018, [çevrimiçi]. Erişim adresi: https://izlik.org/JA56ZJ59YK
ISNAD
Tabatabaeı Malazı, Mahdi - Sensoy, Suha - Heperkan, Hasan Alpay. “Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location”. International Journal of Electronics Mechanical and Mechatronics Engineering 8/1 (01 Ocak 2018): 1529-1535. https://izlik.org/JA56ZJ59YK.
JAMA
1.Tabatabaeı Malazı M, Sensoy S, Heperkan HA. Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location. IJEMME. 2018;8:1529–1535.
MLA
Tabatabaeı Malazı, Mahdi, vd. “Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location”. International Journal of Electronics Mechanical and Mechatronics Engineering, c. 8, sy 1, Ocak 2018, ss. 1529-35, https://izlik.org/JA56ZJ59YK.
Vancouver
1.Mahdi Tabatabaeı Malazı, Suha Sensoy, Hasan Alpay Heperkan. Numerical Investigation Of Heat Transfer In A Cold Plate With Two Different Inlet Location. IJEMME [Internet]. 01 Ocak 2018;8(1):1529-35. Erişim adresi: https://izlik.org/JA56ZJ59YK