• Title/Summary/Keyword: 화재유동

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Numerical Simulation on Smoke Movement in Multi-Compartment Enclosure Fires under Pressurized Air Supply Conditions (급기가압 조건에서 복합 구획 공간 화재의 연기 거동에 대한 수치해석 연구)

  • Ko, Gwon Hyun
    • Fire Science and Engineering
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    • v.32 no.6
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    • pp.15-21
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    • 2018
  • This study examined the flow characteristics of fire smoke under pressurized air ventilation conditions by carrying out fire simulations on multi-compartment enclosure, including room, ancillary room and stair case. Fire simulations were conducted for the air-leakage test facility, which was constructed to measure the effective leakage area and aimed to improve the understandings of fire and smoke movement by analyzing the overall behaviors of fire smoke flow and pressure distributions of each compartment. The simulation results showed that the heat release rate of the fires was controlled sensitively by the amount of air supplied by the ventilation system. An analysis of the velocity distributions between the room and ancillary room showed that fire smoke could be leaked to the ancillary room through the upper layer of the door, even under pressurized air supply conditions. From these results, it was confirmed that the fire size and spatial characteristics should be considered for the design and application of a smoke control system by a pressurized air supply.

The Study on The Ventilated Flow in The Railway Tunnel Mock-Up for Tunnel Fire-Driven Flow Experiment (철도터널 화재유동 실험을 위한 모형 터널에서의 환기 유동 형태에 관한 연구)

  • Jang, Yong-Jun;Kim, Seung-Tae;Kim, Dong-Hyeon;Park, Won-Hee
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.1781-1788
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    • 2008
  • This report is the result of a basic experiment done on a mock-up tunnel, of what happens to the ventilated flow and fire driven flow inside a railway tunnel as the current inside the tunnel changes when an anti-smoke or a radio frequency invert control is installed. The duct used in this experiment is 10m in length, 0.5m in height and 0.25m in width and made of acrylic. An anti-smoke system with a motor that can produce current of 10m/sec maximum in order to create ventilated flow, has been installed. A honeycomb has been installed at the entrance of the duct to create a current flow that exists in tunnels. In order to create a ventilated flow, a current of 4m/s, 6m/s and 8m/s were generated using the anti-smoke system, as the study of current developed. A Hot-wire(TSI) and Pressure sensor(ENDEVCO) was installed in the duct, 1m apart, as the measurement of current and pressure went on. The current and pressure were automatically measured through the Lap View program and PC; the current flow in the mock-up tunnel generated by the honeycomb has been analyzed the pressure distribution and pressure drop has been analyzed.

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Numerical Study on the Reacting Flow Field abound Rectangular Cross Section Bluff Body (사각 둔각물체 주위의 반응유동장에 대한 수치적 연구)

  • Lee, Jung-Ran;Lee, Eui-Ju
    • Fire Science and Engineering
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    • v.27 no.6
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    • pp.64-69
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    • 2013
  • The Numerical simulation was performed on the flow field around the two-dimensional rectangular bluff body in order to simulate an engine nacelle fire and to complement the previous experimental results of the bluff body stabilized flames. Fire Dynamic Simulator (FDS) based on the Direct Numerical Simulation (DNS) was employed to clarify the characteristics of reacting flow around bluff body. The overall reaction was considered and the constant for reaction was determined from flame extinction limits of experimental results. The air used atmosphere and the fuel used methane. For both fuel ejection configurations against an oxidizer stream, the flame stability and flame mode were affected mainly by vortex structure near bluff body. In the coflow configuration, air velocity at the flame extinction limit are increased with fuel velocity, which is comparable to the experiment results. Comparing with the isothermal flow field, the reacting flow produces a weak and small recirculation zone, which is result in the reductions of density and momentum due to temperature increase by reaction in the wake zone.

Characteristics of the Train Car Fire Curve (철도차량화재곡선의 특성 분석)

  • Lee, Duck-Hee;Park, Won-Hee;Jung, Woo-Sung;Kim, Chi-Hun
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.04a
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    • pp.106-111
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    • 2011
  • 철도차량의 화재 시 방출되는 열방출률 곡선은 철도터널 설계 시 방재규모를 결정하는 중요한 인자이다. 하지만 이 열방출률 곡선은 차량에서 발생할 수 있는 화원의 시나리오 및 터널복사나 주변유동과 같은 환경변화에 따라서 다른 특성을 가진다. 따라서 이를 포괄할 수 있도록 대표선도로 표준화된 화재곡선을 선정하여 터널의 설계화재로 사용하게 된다. 본 논문은 실물화재 시험 및 FDS를 이용한 철도차량 화재시뮬레이션과 ISO 9705 설비를 이용한 간단한 화재시험 등의 결과를 분석하여 플래시오버 전 후 단계에서 나타나는 철도차량의 화재곡선 특성을 분석하고 룸코너 시험설비를 이용하여 프리플래시오버 단계의 화재곡선 추정 방안을 제시하였다.

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Effect of Platform Screen Door on fire in the subway station (스크린도어가 설치된 지하철 승강장의 화재유동 전산 수치 모사를 이용한 스크린도어의 화재 영향 연구)

  • Jang, Yong-Jun;Jung, Woo-Sung;Park, Won-Hee;Kim, Hag-Beom
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.1337-1345
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    • 2007
  • The present study is a basic investigation for systematically proceeding disaster prevention studying the effect of platform screen door in case of fire at the subway station. In the paper, the characteristics of screen door were surveyed and described. The fully closed platform screen door and the island type of subway station were employed for simulation-study. Numerical simulations of fire driven flow at the subway station with platform screen door were performed with commercial fire CFD code. For analyzing of the effect of platform screen door, the fire simulations with and without the platform screen door were compared. For the fire location, the one is located on the platform and the other case on the railway. The Ultrafast model was taken as fire growth scenario. The maximum heat release rate was 10MW. The propagated time of the heat and smoke to stairs was within 4 minute when the fire is located on the platform. However the heat and smoke propagation was block off by screen door when the fire is located on the railway.

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A Study on the Effect of Inflammable Materials on the Control Characteristics of Thermal and Smoke Fluid of Water Curtain System (가연성 물질에 따른 워터커튼 시스템의 열 및 연기유동 제어특성에 관한 연구)

  • You, Woo-Jun;Nam, Jun-Seok;Kim, Dong-Joon;Lee, Jeong-Kyoon;Ryou, Hong-Sun
    • Fire Science and Engineering
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    • v.26 no.2
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    • pp.53-58
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    • 2012
  • In this study fire control characteristics for inflammable materials of water curtain system are experimentally analyzed. Heat release rate for pinewood and gasoline was calculated using Room Corner Tester (RCT) and fire test apparatus for water curtain system is manufactured. Nozzles (180 degree of injection angle, 8.2 mm of orifice diameter) are installed at the nearby ceiling of place at 5 m distance from fire originate and temperature profile as well as transmission are obtained from the fire experiment of pinewood and gasoline in the water curtain system. Based on the results, parameters of engineering importance for fire control characteristics of water curtain system such as generation of high temperature smoke and thermal phenomena of fluid flow by injection nozzle are identified.

A Study on Response Characteristics of ionization Smoke Detector Influenced by Air Stream (이온화식 연기감지기의 기류응답특성 연구)

  • 이복영;정길순;이병곤
    • Fire Science and Engineering
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    • v.17 no.2
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    • pp.6-9
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    • 2003
  • Recently, forced ventilating air conditioning system has been widely used in modern buildings. However, It is obvious that this kind of system may affect on the response of fire detectors at real fire incidents, especially, on the ionization smoke detector, which is critically influenced by air stream. Therefore we studied to verify the response characteristics of air stream by ionization smoke detector for the design of facilities in practice. In this study, experiments were executed to examine the correlation between air velocity and the ionization detector's responses with var-ious air velocity and smoke densities in the simulated test room. As a result of experiments, ionization detector's operating time is in reverse proportion to air velocity. And the detector shows more sensitive reaction when the velocity of smoke stream increase over 60 cm/s. In addition, it was shown that ionization smoke detector is more sensitive to smoldering fires in paper than that in petro-chemicals.

A Study on the Calculation of Critical Velocity by Fire Intensity (화재강도에 따른 임계풍속산정에 관한 연구)

  • Kim, Jong-Yoon;Lim, Kyung-Bum;Seo, Tae-Beom;Rie, Dong-Ho;Yoo, Ji-Oh
    • Fire Science and Engineering
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    • v.20 no.4 s.64
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    • pp.91-97
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    • 2006
  • This study was executed to review feasibility on the calculation of critical velocity with a reduced model of an actual tunnel in order to establish the optimum fire protection system for a fire in road tunnels. In a scaled model about 1/29 of an actual tunnel based on the Froude scaling, critical velocity was calculated by visualizing smoke flow and analyzing correlation with temperature. In the experiment, critical velocities at which smoke backflow length became zero showed a small difference within about 5% compared to results calculated by the Kennedy formula, and the relation between smoke flow and temperature distribution appeared similarly without getting greatly influenced by changes in fire intensity.