Improving the cooling performance of electrical distribution transformer using transformer oil - Based MEPCM suspension

被引:29
作者
Hasan, Mushtaq Ismael [1 ]
机构
[1] Thi Qar Univ, Coll Engn, Dept Mech Engn, Thi Qar, Iraq
来源
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH | 2017年 / 20卷 / 02期
关键词
Electrical transformer; Transformer oil; MEPCM; Phase change material; Cooling performance; Distribution transformer;
D O I
10.1016/j.jestch.2016.12.003
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper the electrical distribution transformer has been studied numerically and the effect of outside temperature on its cooling performance has been investigated. The temperature range studied covers the hot climate regions. 250 KVA distribution transformer is chosen as a study model. A novel cooling fluid is proposed to improve the cooling performance of this transformer, transformer oil-based microencapsulated phase change materials suspension is used with volume concentration (5-25)% as a cooling fluid instead of pure transformer oil. Paraffin wax is used as a phase change material to make the suspension, in addition to the ability of heat absorption due to melting, the paraffin wax considered as a good electrical insulator. Results obtained show that, using of MEPCM suspension instead of pure transformer oil lead to improve the cooling performance of transformer by reducing its temperature and as a consequence increasing its protection against the breakdown. The melting fraction increased with increasing outside temperature up to certain temperature after which the melting fraction reach maximum constant value (MF = 1) which indicate that, the choosing of PCM depend on the environment in which the transformer is used. (C) 2016 Karabuk University. Publishing services by Elsevier B.V.
引用
收藏
页码:502 / 510
页数:9
相关论文
共 14 条
[1]   Experimental study of natural convection heat transfer in a microencapsulated phase change material slurry [J].
Diaconu, Bogdan M. ;
Varga, Szabolcs ;
Oliveira, Armando C. .
ENERGY, 2010, 35 (06) :2688-2693
[2]   Experimental assessment of heat storage properties and heat transfer characteristics of a phase change material slurry for air conditioning applications [J].
Diaconu, Bogdan M. ;
Varga, Szabolcs ;
Oliveira, Armando C. .
APPLIED ENERGY, 2010, 87 (02) :620-628
[3]  
Farid M., 2007, 5 INT C NAN MICR MIN
[4]   LAMINAR FORCED-CONVECTION HEAT-TRANSFER IN MICROCAPSULATED PHASE-CHANGE MATERIAL SUSPENSIONS [J].
GOEL, M ;
ROY, SK ;
SENGUPTA, S .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1994, 37 (04) :593-604
[5]   Numerical investigation of counter flow microchannel heat exchanger with MEPCM suspension [J].
Hasan, Mushtaq I. .
APPLIED THERMAL ENGINEERING, 2011, 31 (6-7) :1068-1075
[6]  
Hashmi M, 2013, Open J Appl Sci, V3, P24, DOI [10.4236/ojapps.2013.32b005, DOI 10.4236/OJAPPS.2013.32B005]
[7]  
Hrishikesh EP, 2010, J NANOPART RES, V12, P1015
[8]   Numerical simulation of natural convection of latent heat phase-change-material microcapsulate slurry packed in a horizontal rectangular enclosure heated from below and cooled from above [J].
Inaba, Hideo ;
Zhang, Yanlai ;
Horibe, Akihiko ;
Haruki, Naoto .
HEAT AND MASS TRANSFER, 2007, 43 (05) :459-470
[9]  
Kaye G.W.C., 2013, MECH PROPERTIES MAT
[10]  
Meshkatoddini Mohammad R., 2008, American Journal of Engineering and Applied Sciences, V1, P384, DOI 10.3844/ajeassp.2008.384.388