바로가기메뉴

본문 바로가기 주메뉴 바로가기

ACOMS+ 및 학술지 리포지터리 설명회

  • 한국과학기술정보연구원(KISTI) 서울분원 대회의실(별관 3층)
  • 2024년 07월 03일(수) 13:30
 

logo

복층터널 화재대응을 위한 원격 자동소화시스템 개발 연구

Development of remote control automatic fire extinguishing system for fire suppression in double-deck tunnel

(사)한국터널지하공간학회 / (사)한국터널지하공간학회, (P)2233-8292; (E)2287-4747
2019, v.21 no.1, pp.167-175
https://doi.org/10.9711/KTAJ.2019.21.1.167
박진욱 (한국건설기술연구원)
유용호 (한국건설기술연구원)
김양균 (한국건설기술연구원)
박병직 (한국건설기술연구원)
김휘성 (한국건설기술연구원)
박상헌 (동일기술공사 기술연구소)
  • 다운로드 수
  • 조회수

Abstract

'To effectively deal with the fire in tunnel which is mostly the vehicle fire, it’s more important to suppress the fire at early stage. In urban tunnel, however, accessibility to the scene of fire by the fire fighter is very limited due to severe traffic congestion which causes the difficulty with firefighting activity in timely manner and such a problem would be further worsened in underground road (double-deck tunnel) which has been increasingly extended and deepened. In preparation for the disaster in Korea, the range of life safety facilities for installation is defined based on category of the extension and fire protection referring to risk hazard index which is determined depending on tunnel length and conditions, and particularly to directly deal with the tunnel fire, fire extinguisher, indoor hydrant and sprinkler are designated as the mandatory facilities depending on category. But such fire extinguishing installations are found inappropriate functionally and technically and thus the measure to improve the system needs to be taken. Particularly in a double-deck tunnel which accommodates the traffic in both directions within a single tunnel of which section is divided by intermediate slab, the facility or the system which functions more rapidly and effectively is more than important. This study, thus, is intended to supplement the problems with existing tunnel life safety system (fire extinguishing) and develop the remote-controlled automatic fire extinguishing system which is optimized for a double-deck tunnel. Consequently, the system considering low floor height and extended length as well as indoor hydrant for a wide range of use have been developed together with the performance verification and the process for commercialization before applying to the tunnel is underway now.

keywords
복층터널, 원격제어, 소화설비, 실규모 화재 실험, 화재진압, Double deck tunnel, Remote control, Fire extinguishing system, Real scale fire test, Fire suppression

참고문헌

1.

1. Duncan, J.M. (1996), “State of the art: limit equilibrium and finite-element analysis of slopes”, Journal of Geotechnical Engineering, Vol. 122, No. 7, pp. 577-596.

2.

2. Nam, K.M., Choi, M.K., Kim, J.J., Yoo, H.K. (2017), “Stability analysis of an existing utility tunnel due to the excavation of a divergence tunnel emerging from double-deck tunnel”, Journal of Korean Tunnelling and Underground Space Association, Vol. 19, No. 2, pp. 231-248.

3.

3. Park, J.W., Park, Y.J., You, K.H., Lee, S.D. (2004), “A study on the assessment of safety factor tunnels”, Journal of Korea Society for Rock Mechanics, Vol. 14, No. 5, pp. 327-338.

4.

4. Park, Y.J., Chae, Y.S., You, K.H., Paik, Y.S. (1999), “Slope stability analysis by slice method and finite difference method -A comparative study-”, Journal of Korean Geotechnical Society, Vol. 15, No. 6, pp. 263-272.

5.

5. Park, Y.J., You, K.H. (1998), “Stability analysis for jointed rock slope using ubiquitous joint model”, Journal of the Korean Society for Rock Mechanics, Vol. 8, No. 4, pp. 287-295.

6.

6. You, K.H., Park, Y.J., Bae, G.J. (2000), “An assessment of safety factor for tunnels excavated in a weak rock layer”, Journal of Korean Tunnelling and Underground Space Association, Vol. 2, No. 3, pp. 47-57.

(사)한국터널지하공간학회