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Analysis of Heat Dissipation Characteristics for Standard 25 [W] LED Module of Korea Expressway Corporation: Using CFD Analysis

CFD 해석을 이용한 한국도로공사 표준 25 [W] LED 모듈의 방열 특성 분석

  • Lee, Se-Il (LED-Marine Convergence Technology R&D Center, Pukyong National University) ;
  • Her, In-Sung (LED-Marine Convergence Technology R&D Center, Pukyong National University) ;
  • Lee, A-Ram (LED-Marine Convergence Technology R&D Center, Pukyong National University) ;
  • Jung, Min-Joo (Department of LED Fusion Engineering, Pukyong National University) ;
  • Yu, Young-Moon (LED-Marine Convergence Technology R&D Center, Pukyong National University)
  • 이세일 (부경대학교 LED 해양융합기술연구센터) ;
  • 허인성 (부경대학교 LED 해양융합기술연구센터) ;
  • 이아람 (부경대학교 LED 해양융합기술연구센터) ;
  • 정민주 (부경대학교 LED 융합공학전공) ;
  • 유영문 (부경대학교 LED 해양융합기술연구센터)
  • Received : 2014.06.05
  • Accepted : 2014.07.04
  • Published : 2014.08.01

Abstract

Korea Expressway Corporation established standard of LED lighting fixture in Dec. 2013. To raise compatibility, the standard requires a fixed form and it is applied to street lights and tunnel lights, etc. Because streetlight has different circumstance condition from tunnel light that is down light and exposed to constant wind velocity over height of 8 meters, in case of LED module which has the same shape, characteristic of radiant heat can be different. In this paper, we designed 25 [W] LED Module that is designated by standard of Korea Expressway Corporation and analyzed characteristics of radiant heat about natural convection and forced convection. It is dropped 10.12[$^{\circ}C$] that max temperature is decreased by increasing 20 mm of bended height of heatsink at the condition of natural convection. Radiant heat characteristic of bended height 35 mm became 78.08[$^{\circ}C$] at the condition of natural convection, 55.30[$^{\circ}C$] at the condition of forced convection so that 22.78[$^{\circ}C$] is decreased that is 29.1[%] decrease. Bended height 55mm became 67.96[$^{\circ}C$] at the condition of natural convection, 48.04[$^{\circ}C$] at the condition of forced convection so that 19.92[$^{\circ}C$] is decreased that is 29.3% decrease.

Keywords

References

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