A Study on the Thermal Analysis of Circular LED Street Lights

  • So, Byung Moon (Dept. of Convergence TechnologyEngineering, College of Eng., Chonbuk National University)
  • Received : 2017.09.14
  • Accepted : 2017.09.18
  • Published : 2017.09.30

Abstract

This paper confirms the similarity of temperature tendency through numerical analysis and comparison with test, and it also confirms that temperature prediction of LED lightings is possible by numerical analysis. We confirmed that the temperature difference is about $10{\sim}20^{\circ}C$ except for some measurement points and shows similar tendency with the interpretation through manufacturing and performance analysis of AL heat sink applied Circular LED street lights and manufacturing and performance analysis of CMP-PLA heat sink applied Circular LED street lights. The simulations use Octree technique in SC/Tetra to set the grid size df the surface.

Keywords

References

  1. Kwon, B.C., "Ultra-compact and light-weighted through analysis of thermal analysis simulation," Hanbat. Univ. Report, (2016).
  2. Kim, S. J., "A study on the heat transfer of the heatsink", Taejon National Univ., (1988).
  3. Park, J. M. Choi, W. S., Kwon, S. H., and Cha, J.H, "Optimal Cutting Conditions of Surface Roughness for Inconel 718 Alloy in Turning Operation", Journal of the KSMPE, 8(4): 48-53, (2009).
  4. Lee, Y. M., Chang, S. I., Sun, J. W., and Yun, J. H., "Chip Breaking Characteristics Depending on Equivalent Effective Rake Angle in Turning," Journal of KSMPE, Vol.2, No.2, pp.25-31, (2004).
  5. Park, J. M. and Choi, W. S., "Optimal Cutting Conditions of Surface Roughness for Inconel 718 Alloy in Turning Operation," Journal of the KSMPE, Vol. 8, No. 4, pp 48-53, (2009).
  6. Lee, J. W. and Min, K. D., "A Study on Nozzle Flow and Spray Characteristics of Piezo Injector for Next Generation High Response Injection," Transactions of the KSME(B), Vol. 30, No. 6, pp. 553-559, (2006).
  7. Narendran, N. and Gu, Y., "Life of LED-based White Light Sources," Journal of Display Technology, Vol. 1, No. 1, pp. 167-171, (2005). https://doi.org/10.1109/JDT.2005.852510
  8. Sathe, S. and Sammakia, B., "A Review of resent Developments in Some Practical Aspects of Air-Cooled Electronic package," Journal of Heat Transfer, Vol. 120, No. 4, pp.830-839, (1998). https://doi.org/10.1115/1.2825902
  9. da Silva, A.K. and Lorente, S., Bejan, A., "Optimal Distribution of Discrete Heat Sources on a Plate with Laminar Forced Convection," International Journal of Heat and Mass Transfer, Vol. 47, pp. 2139-2148, (2004). https://doi.org/10.1016/j.ijheatmasstransfer.2003.12.009
  10. ILYoung Shin, "Development of high efficiency LED luminaire and process with improved heat dissipation and light distribution technology" Yuil CNT. (2013).
  11. Shin, B. Y., Cho, B. H., Hong, K. H., and Kim, B. S., Polymer(Korea), 33, 588, (2009).
  12. Myung, K. S., "An experimental Study on Development of Complex Heat Dissipation System for LED lamp," kyungKi. Univ. (2017).