Design Method for Flowing Water Purification with UV Lamp

UV램프를 이용한 유수처리형 살균장치의 설계방법

  • 정병균 (서강정보대학 임상병리과) ;
  • 이진종 (전남과학대학 작업치료과) ;
  • 정병호 (남부대학교 의료공학과)
  • Published : 2009.12.01

Abstract

A number of factors combine to make ultraviolet radiation a superior means of water purification for ground water, rainwater harvesting systems and so on. Ultraviolet radiation is capable of destroying all types of bacteria. Additionally, ultraviolet radiation disinfects rapidly without the use of heat or chemical additives which may undesirably alter the composition of water. In a typical operation, water enters the inlet of a UV lamp and flows through the annular space between the quartz sleeve and the outside chamber wall. The irradiated water leaves through the outlet nozzle. Several design features are combined to determine the dosage delivered. The first is Wavelength output of the lamp, the Second is Length of the lamp - when the lamp is mounted parallel to the direction of water flow, the exposure time is proportional to the length of the lamp, the third is Design water flow rate - exposure time is inversely related to the linear flow rate, the forth is Diameter of the purification chamber - since the water itself absorbs UV energy, the delivered dosage diminishes logarithmically with the distance from the lamp. In this paper, It describe the how to design optimal UV disinfection device for ground water and rainwater. To search the optimal design method, it was performed computer simulation with 3D-CFD discrete ordinates model and manufactured prototype. Using proposed design method manufactured prototype applied to disinfection test and proved satisfied performance.

Keywords

References

  1. Eugen Nisipeanu and Muhammad Sami, "Computer Simulation Optimizes Design of UV Disinfection Reactors", Water Conditioning & Purification, pp. 62-64, 2004
  2. C Shan, Assessment of Deficiency of Fish Tank Water UV Disinfection and Remedial Measures, Research Fund for the Control of Infectious Diseases, 2007
  3. 정병호, 이강연, "자외선램프를 이용한 유수처리장치 설계 시뮬레이션", 조명.전기설비학회논문지. vol.23, no.9, pp. 17-23, 2009 https://doi.org/10.5207/JIEIE.2009.23.9.017
  4. Alex Munoz, Stephen Craik, and Suzanne Kresta,"Computational fluid dynamics for predicting performance of ultraviolet disinfection sensitivity to particle tracking inputs", Journal of Environ. Eng. Sci. 6, pp 285-301, 2007 https://doi.org/10.1139/S06-045
  5. Christoph Reichl, Christoph Buchner, Georg Hirschmann, Regina Sommer, Alexander Cabaj, "Development of a simulation method to comparison to biodosimtric measurements ", Conference on Modelling Fluid Flow (CMFF''06) The 13th International Conference on Fluid Flow Technologies Budapest, Hungary, pp. 6-9, 2006
  6. Guo Liu, An investigation of UV disinfection performance under the influence of turbidity & particulates for drinking water applications, A thesis presented to the University of Waterloo in fulfillment of the thesis requirement for the degree of Master of Applied Science in Civil Engineering, Waterloo, Ontario, Canada, 2005
  7. 박영규, "수돗물 소독방법의 최근 동향", 제 22차 국제환경문제 심포지움, vol. 19, No. 2, 2, pp. 153-170,2002
  8. 신동호, 김진현, 김정민, 고승민, 모효원, 이용택, "하수방류수의 자외선 살균을 위한 설계인자 최적화에 관한 연구", 응용화학, Vol. 8. No. 2, pp. 697-700, Oct. 2004
  9. 황인아, 이현수, 박재윤, "자외선.오존 살균 소독장치 제작을 위한 시뮬레이션 및 대장균 제거 특성" 대한전기학회논문지P, vol.54, no.4, pp.198-202, 2005
  10. 이인화, 박종순, 김시옥, 차진명, 최경주, 이법규, "자외선-광촉매효과를 이용한 대장균, 곰팡이 및 병충해 유발균의 살균" 대한환경공학회지. Vol.23(3). 473-483, 2001
  11. 임현수, 김승모, 최명락, 최춘순, 공흥진, 김정희,"수조수살균을 위한 고성능 자외선 살균장치" 산업식품공학 Vol..3(3), 164-169. 1999