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Journal of Korean Institute of Fire Science and Engineering 2003;17(2):62-69.
Published online June 30, 2003.
지하철 화재시 본선터널 환기시스템에 따른 열 및 연기배출특성
이동호유지오
1인천대학교 안전공학과2신흥대학 건축설비과
A Study of Heat St Smoke Evacuation Characteristics by the Changing of Operational Method of Tunnel Fan Shaft Ventilation System for Fire on Subway Train Vehicle
요약
국내의 경우, 지하철 승강장 제연설비는 전용설비로 구축되어 있지 않고 화재발생시 승강장환기설비 및 본선터널부의 환기설비를 제연모드로 절환하여 운영되고 있다. 제연효과는 이러한 까닭으로 환기설비의 위치, 용량 및 급배기방식에 종속된다. 따라서 본 연구는 승강장에 정차한 열차에서 화재가 발생하는 경우를 대상으로 승객의 대피 소요시간을 산출하고 지하철환경해석 프로그램인 SES(Subway Environmental Simulation)를 사용하여 터널부 환기설비의 제연절환운전으로 승강장부에 형성되는 기류의 해석 및 FDS(Fire dynamics Simulator)을 이용하여 화재해석을 제연방식별로 수행한다. 얻어진 가시도 및 승강장 의 온도로부터 본선 터널부 제연모드별 특성을 규명한다.
Key Words: 제연, 환기시스템, 지하철 승강장 화재, 대피
Abstract
The smoke control system in subway platform is not only using for smoke exhaust facility but also using ventilation system. For this reason, smoke vent effectiveness is depending on its position, ventilating volume capacity and the vent method. In this study, the passenger's evacuation time was calculated for the case of fire on sloped subway train vehicle in subway platform. In order to recommend the mechanical smoke exhaust operation mode, SES (Subway Environmental Simulation) was used to predict the airflow of the inlet and outlet tunnel for the subway station. Fire dynamics Simulator(FDS) was used the SES's velocity boundary conditions to calculate the smoke density and temperature under the condition of fire on stopped subway train vehicle at the platform. We compared smoke density and temperature distributions for each 6 types of smoke exhaust systems to clarify the characteristics of smoke and hot air exhaust effectiveness from the result of fire simulation.
Key Words: Smoke control, Ventilation system, Subway station fire, Evacuation


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