LOW VOLTAGE APPARATUS ›› 2023, Vol. 0 ›› Issue (4): 61-66.doi: 10.16628/j.cnki.2095-8188.2023.04.010

• Distributed Generation and Grid-Connection Technology • Previous Articles     Next Articles

Design on Heat Dissipation Structure of High Power Electrical Control Box

GUO Qing   

  1. Shanghai Electrical Apparatus Research Institute(Group) Co.,Ltd.,Shanghai 200063,China
  • Online:2023-04-30 Published:2023-05-09

Abstract:

Based on the differential equation of heat conduction,fluid motion control equation,and radiation heat transfer equation,a mathematical model of coupled heat transfer in an electrical control box is established.The three-dimensional temperature field and airflow field are numerically calculated under steady-state conditions of the electrical control box.The relevant temperature rise tests are carried out.The calculated results are in good agreement with the test results.The error meets the actual engineering requirements.Finally,the highest temperature portion and heat dissipation law of the current carrying circuit are pointed out.The proportion of radiation heat exchange in the total heat dissipation of the current carrier circuit is calculated.The temperature rise of the current carrying circuit is simulated for different current carrying circuit emissivity and different heat dissipation box structures.The results show that improving the surface emissivity of the current carrying circuit and changing the top brim to open the shutter can effectively reduce the temperature rise of the electrical control box.

Key words: control box, heat dissipation, thermal simulation, temperature rise

CLC Number: