• Title/Summary/Keyword: Underground Subway Fire

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A Study on the suitable Underground space for Safety against Terror (테러안전을 위한 지하공간의 예방대책)

  • Kwon, Jeong-hoon;Park, Ok-cheol;Kim, Tae-hwan
    • Journal of the Society of Disaster Information
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    • v.4 no.1
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    • pp.34-52
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    • 2008
  • The result of all terrors causes enormous damage. In order to prevent this damage in advance and find a prompt provision after terror, we investigated a safety measure against terror on the assumption that the fire in Daegu central subway is a subway terror. The followings are the safety measures against terror based on an underground space. Frist, training systems have to be established to provide against a terror. Second, People's consciousness about safety from a terror, centering on early education, has to be raised. Third, the provisions related with underground tunnel have to be established so that people can take shelter in underground tunnel areas. Fourth, CCTV has to be established in the guest rooms of the electric motor cars. Last, cooperative systems among related organizations have to be constructed, and the networks of the organizations have to be established so that they can cope with an accident.

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Analysis of Smoke Spread Effect Due to The Fire Location in Underground Subway-Station (대심도 역사의 화재위치에 따른 연기확산 영향 분석)

  • Jang, Yong-Jun;Koo, In-Hyuk;Kim, Jin-Ho;Nam, Seong-Won
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.2885-2890
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    • 2011
  • Simulation study were performed for fire location effect on the smoke spread in the deeply-underground subway station(DUSS). In this research, Shingumho station (The line # 5, Depth: 46m) has been selected as case-study for the analysis of smoke-spread effect with the different fire location. Field test data measured for actual fan in DUSS was applied as a condition of a simulation. The whole station was covered in this analysis and 4 million grids were generated for this simulation. The fire driven flow was analyzed case by case to compare the smoke-spread effect according to the fire location. In order to enhance the efficiency of calculation, parallel processing by MPI was employed and LES(large eddy simulation) method in FDS code was adopted.

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Study on Heat and Smoke Exhaust Characteristics for Different Operating Modes of Platform and Tunnel Fans during a Passenger Train Fire (전동차 화재시 승강장 및 터널 환기실의 팬 작동에 따른 열 및 연기 배출 특성 연구)

  • Chang, Hee-Chul;Kim, Tae-Kuk;Son, Bong-Sei;Park, Won-Hee
    • Fire Science and Engineering
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    • v.22 no.1
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    • pp.61-67
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    • 2008
  • This study is focused on the numerical predictions of heat and smoke exhaust characteristics in an underground subway station stopping a fire train. Various ventilation operating modes with the fan equipped the platform and tunnels are considered. Distributions of temperature, carbon monoxide and visibility at a height of 1.7 m(breath height) above the platform are analysed for different ventilation fan operation mode. The numerical results show that smoke and heat is rapidly removed through tunnel by operating the tunnels fans. We suggested that during evacuation of passengers is not completed, the ventilation system in the platform is activated. After completion of passenger evacuation tunnel fans are activated but the fans in the platform are stopped.

Counter Measures of the Subway Terrorism through Case Analysis (사례분석을 통한 지하철 테러에 대한 대책)

  • Kwon, Jeong-Hoon;Kim, Tae-Hwan;Choi, Jong-Gyun
    • Korean Security Journal
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    • no.18
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    • pp.1-20
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    • 2009
  • Nowadays most nations around the world including Korea have experienced absolute shortages of available urban space. To solve various problems of the city, each nation constantly tends to extend the underground space. However there is a serious problem in making use of the underground space. Especially new terrorism coming into existence after 9.11 terror turns into the so-called ‘soft target’ which has something to do with public transportation facilities available to most people. Good examples are like these: poisonous gas attacks in Tokyo subway in 1995, Daegu subway station fire in 2003, serial bomb blast of London subway in 2005. In spite of being a concern on incidents related to the underground space it is inevitable to utilize the underground space and the tendency is growing. But Korea lags badly behind in foreign countries in this field and so seeking measures is urgently needed. Therefore the aim of this study is to note visible damages stemmed from the domestic and foreign underground space and propose more effective and adequate measures. Safety measures of terrorism are associated to minimize damage out of terrorism and they are as follows. In the first place, preparing protective equipment for saving a life from fire attacks and poisonous gas is needed urgently. In the second place, counterpart management on the spot and systematic security training should be established in order to minimize injury. In the third place, fire escapes must be provided for a rapid evacuation of potential unspecified individuals. In the fourth place, building up a network of related institutions is required for a systematic omnidirectional counterpart. Finally the Korean government ought to take fast and appropriate actions for the injured and bereaved family of the terror incident.

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A study on the evaluation of fire safety according to the ventilation mode in a train fire at the subway platform (지하철 승강장에서 열차 화재시 제연모드에 따른 화재 안전성 평가 연구)

  • Ryu, Ji-Oh;Lee, Hu-Young
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.22 no.3
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    • pp.293-310
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    • 2020
  • The purpose of this study is to present the most effective smoke exhaust mode by comparing the quantitatively evaluated risks according to the smoke exhaust mode when a train fire occurs in a subway platform. Therefore, applying the typical subway platform as a model, train fire scenarios are developed with the evacuation start time and location of the fire train for each exhaust mode. The fire accident rates (F) are calculated and the number of fatalities (N) was quantitatively estimated by fire analysis and evacuation analysis for each scenario. In addition, the F/N curve compared with the social risk assessment criteria and the following conclusions were obtained. In the event of a train fire at the subway station platform, the evacuation must start up within 600 s in maximum to ensure the evacuees' safety. To secure evacuation safety, it is advantageous to operate the HVAC system of the platform in the air-supply mode at station without TVF. Comparing the F/N curve for each exhaust mode with the social risk criteria, it turned out that the risk significantly exceeds the social risk criteria in case of no mechanical ventilation. As a result, this paper shows that the ventilation mode in which TVF are exhausted and HVAC system is operated in the pressurized mode are the most effective smoke exhaust mode for ensuring evacuation safety.

Numerical Study on the Improvement Heat and Smoke Control System in Old Subway Station on Train Fire (수치해석을 통한 노후 지하철 역사 내 열차 화재 시 제연모드 개선에 관한 연구)

  • Kim, Hyo-Gyu;Baek, Doo-San;Yoo, Yong-Ho
    • Fire Science and Engineering
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    • v.31 no.3
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    • pp.88-96
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    • 2017
  • The subway can transport a lot of people at a certain route at once, and the railway and the platform are underground, so it is advantageous to use the ground space efficiently. But If a fire occurs in a subway that is used by an unspecified number of people, such as the Daegu Subway Fire Disaster, many casualties can occur. As a result of the previous research, it was confirmed that the performance of the ventilation system of the old subway platform was remarkably degraded. Therefore, in this study, based on the experimental results of the previous research, we confirmed the flow of the hot and CO flows according to the ventilation mode in the case of fire by three - dimensional numerical analysis. As a result, it was found that the old ventilation system could not maintain the hot air temperature below the reference value for 4 minutes based on the evacuation time of the platform, and when the ventilation performance was enhanced by adding Oversized Exhaust Ports at the upper part of the platform, And the temperature of the heat flow can be maintained.

Experimental Investigation about Optimum Smoke Extraction System for Underground Station (축소 모형 실험을 통한 정거장내 적정 배연방식에 관한 연구)

  • Lee, Ho-Keun;Kim, Myoung-Woo;Lee, Phill-Young;Kim, Nam-Suk
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.4
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    • pp.53-59
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    • 2008
  • If fire is occurred in the subway, the train must be moved to the closest station and make passengers get off the train. As a matter of fact, the Fire of Dae-gu Subway was coped with this way. But, the fire smoke extraction system of real subway stations have not designed to deal with fire of trains yet. Therefore, we have to establish a plan of station railroad for preventing from unexpected damage when the fired train comes to the station. The purpose of this study is to establish the effective smoke extraction measure that is to prevent stations from damage by the scale-down experiment.

Smoke Control According to the Ventilation Capacity in Subway Tunnel Fire: I. FDS Simulation (지하철 터널 화재시 환기시설의 용량에 따른 제연효과 I. FDS 시뮬레이션)

  • Park, Kyung-Jun;Lee, Ki-Jun;Hadi, Bettar El;Lee, Jai-Hyo;Shin, Dong-Il
    • Journal of the Korean Institute of Gas
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    • v.15 no.3
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    • pp.31-38
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    • 2011
  • In this study, we investigate simulation studies to confirm the removal of smoke through ventilation when the subway car is on fire and stopped in an underground subway tunnel, by using Fire Dynamics Simulator (FDS) which is being upgraded by NIST. The structure of subway tunnel and train for simulation modeling are based actual data from Seoul metropolitan subway. The main purpose of this study is to assure the removal efficiency of the ventilation when changing the ventilation capacity between 2.0 m/s and 3.0 m/s. The results of the study shows that carbon monoxide (CO) and carbon dioxide ($CO_2$) are reduced by about 35% as the ventilation capacity is increased by 0.5 m/s. This study also performs the grid sensitivity verification of FDS for improved accuracy of the results. To find the effective size of the grid, three cases are simulated and the results are compared.

Insulation Coordination of Forced Drainage in Electric Railway (직류방식 전기철도에서 강제배류기의 절연협조)

  • Min, B.H.;Eo, I.S.
    • Proceedings of the KIEE Conference
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    • 1999.07a
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    • pp.446-448
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    • 1999
  • The forced drainage set up to decrease the cathodic protection in each kind of steel conduit laid under the ground is so proscribed to be maintained less than 60V in its output voltage that insulation coordination is easy to be left out of account, on the basis of 60V of working voltage. When railway or subway break down during the service of a subway, 1,500 voltage approximating to line voltage flows through the load terminal of the drainage (rail and underground conduit) though momentary in the worst case. And so, an accident followed by dielectric breakdown, fire and damage by a fire is expected. Therefore, I suggest that insulation coordination should be considered against such a thing on designing, producing and setting up forced drainage.

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