会议专题

A Coupled Three-Dimensional Fluid-Thermal Fields Analysis of KYN28A-12 Switch Cabinet

In the design process of switch cabinet, the heat dissipation of current-carrying loop is one of the key problems. By introducing the heat conduction differential equation, Navier-Stokes equations and radiation heat transfer equation, the multi-physical field coupled mathematical models are established for researching the heat dissipation problem in the switch cabinet in this paper. The mathematical models and the finite volume method are presented to compute the three-dimensional thermal and fluid fields of KYN28A-12 switch cabinet And wall function method is used to deal with convection heat transfer boundary conditions. Then the hexahedral finite element mesh method is used in the numerical calculation. The thermal and fluid fields are calculated respectively in two different conditions, natural convection and forced convection. Compared with natural convection, the temperature in the forced convection is obviously lower. The heat dissipation of the current-carrying loop is increased in the situation of forced convection.

ZHANG Jun-min GAO Chao FENG Hao YAN Guang-chao ZHAO fei YUAN Duan-lei ZHAO Hong-fei

School of Automation Science and Electrical Engineering, Beihang University, Beijing, China CEET PINGGAO GROUP COMPANY LIMITED, Pingdingshan, Henan Province, China

国际会议

2011 1st International Conference on Electric Power Equipment-Switching Technology(第一届电力设备开断技术国际会议 ICEPE)

西安

英文

466-470

2011-10-23(万方平台首次上网日期,不代表论文的发表时间)