바로가기메뉴

본문 바로가기 주메뉴 바로가기

ACOMS+ 및 학술지 리포지터리 설명회

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

logo

신개발 내화재료에 피복된 철근콘크리트 터널라이닝의 내화성능평가

Evaluation of fire-proofing performance of reinforced concrete tunnel lining coated by newly developed material

(사)한국터널지하공간학회 / (사)한국터널지하공간학회, (P)2233-8292; (E)2287-4747
2008, v.10 no.4, pp.329-336
박해균 ((주)삼성물산 건설부문)
김장호
  • 다운로드 수
  • 조회수

Abstract

Efficient traffic network is required in urban area for good living condition. However, dense traffic network creates traffic jam and gives bad influences to the ground environment. Therefore, advanced use of underground and tunnel is required. But, in the last 20 years many tunnel fire accidents have occurred all over the world. Increase of tunnels and increase of traffics result in increase of tunnel fire. Tunnel fire creates damage to people and to the tunnel structure. Also, tunnel fire creates a big economical loss. In a mountain tunnel, the stability of the tunnel will not be disturbed by fire although the tunnel lining will get a severe damage. However, in a shield tunnel or immersed tube tunnel, cut and cover tunnel, there is a high possibility that tunnel itself will collapse by fire because their tunnel concrete lining is designed as a structural member. The aim of this experimental research is to verify the fire protection performance of newly developed cementitious material compared with the broadly used existing products in Europe and Japan. For the experiments, the general NATM tunnel concrete linings with the newly developed material were tested using fire loading curve of RABT (Maximum peak temperature is 1,200℃) and RWS (Maximum peak temperature is 1,350℃). From the test results, the newly developed fire protection material applied with 30 mm thickness showed good fire-proofing performance under RABT fire loading.

keywords
Fire protection, concrete lining, bottom ash, RABT curve, RWS curve, 내화, 콘크리트 라이닝, 바텀 애쉬, RABT곡선, RWS곡선

참고문헌

1.

Mai, D, (2002) Cement-based mineral-containing passive fire protection for underground structures, Fourth International Symposium on Sprayed

2.

Park, Hae-Geun, (2005) Evaluation of Fire resistance performance of Shield Tunnel Reinforced Concrete Linings using Polypropylene fiber, Journal of KSCE

3.

Tajima, H., (2005) Study on the deformation and load bearing capacity of TBM shield tunnel lining in fire, Underground Space Use: Analysis of the Past and Lessons for the Future, Proceedings of the International World Tunnel Congress and the 31st ITA General Assembly

(사)한국터널지하공간학회