DOI QR코드

DOI QR Code

소형 LPG 저장탱크 매몰 설치에 대한 피해영향평가

An Estimation of the Consequence Analysis for an Underground Installation of the LPG Storage Tanks

  • 송동우 (서울과학기술대학교 안전공학과) ;
  • 전운영 (서울과학기술대학교 안전공학과) ;
  • 이수경 (서울과학기술대학교 안전공학과)
  • Song, Dong-Woo (Dept. of Safety Engineering, Seoul National Univ. of Science & Technology) ;
  • Jun, Woon-Young (Dept. of Safety Engineering, Seoul National Univ. of Science & Technology) ;
  • Lee, Su-Kyung (Dept. of Safety Engineering, Seoul National Univ. of Science & Technology)
  • 투고 : 2015.07.15
  • 심사 : 2015.08.26
  • 발행 : 2015.08.31

초록

본 논문에서는 LPG 소형저장탱크의 보급확대에 따른 위험성감소 방안으로 소형저장탱크의 지상 및 지하매몰 설치에 대한 피해영향평가를 수행하였다. 지하에 설치된 소형저장탱크의 피해영향평가를 수행하기 위해 FDS를 활용하여 격납형으로 설치된 소형저장탱크를 모사하였고, FDS로부터 소형저장탱크실의 최대 압력을 도출하여 피해영향 평가 프로그램인 Phast의 입력변수로 활용하였다. 지상 및 지하에 설치된 소형저장탱크의 각각의 피해영향평가를 시뮬레이션을 통해 연소하한계(LFL) 및 연소상한계(UFL)의 확산범위, 고압분출화재(Jet fire), 폭발 등 피해영향을 정량적인 수치로 제시하였다.

In this paper, the consequence analysis has been evaluated for the damage effects of the LPG storage tanks when they are installed on the ground or underground. They should be performed to identify measures to reduce risks for the LPG storage tanks which are more widely used. In order to conduct a damage effect evaluation of the LPG storage tanks installed underground, FDS was used to simulate the LPG storage tanks installed and housed within a facility. The maximum pressure of the storage facilities for the LPG storage tanks has been calculated from the FDS, and it's results are used as an input variable for Phast which is a commercial software for evaluating the damage effects. Getting results from the consequence analysis and computational simulations(diffusion range of LFL and UFL, jet fire or explosions) were quantitatively presented for the damage effects.

키워드

참고문헌

  1. Kap-man Jang, Ji-Sun Km and Jin-Han Lee, "The Safety Analysis of the Underground LPG Storage Tank", Spring Conference of the The Korea Society for Energy Engineering , P-35, 2014
  2. Ki-Yeon Lee, Sang-Geoun Son and Jang-Woo Lee, "A Study on the Analysis and Measure for Accident case of LP Gas Storage Tanks", Korean Institute of Fire Investigation, 2009(1), 101-109, (2009)
  3. Seung-Lim Lee and Young-Soon Lee, "A Study on the Probability of BLEVE of Aboveground LP Gas Storage Tanks Exposed to External Fire", KIGAS, 7(1), 19-23, (2003)
  4. KGS FU 432 Facility/Technical/Inspection Code for Facilities Using LP Gas in Small Storage Tanks , KGS(2014)
  5. NFPA 58: Liquefied Petroleum Gas Code
  6. KOSHA CODE P-8-2012, KOSHA(2012)
  7. KGS FU 331 Facility/Technical/Inspection/Safety Diagnosis/Safety Assessment Code for Places Storing LP Gas in Storage Tanks , KGS(2014)