• Title/Summary/Keyword: 피난해석

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Numerical Study on the Effect of Damper Position on Characteristics of Thermal Flow at the Vestibules and Fire Door (댐퍼의 위치가 부속실 및 방화문에서의 열 유동 특성에 미치는 영향에 관한 수치해석 연구)

  • Moon, Hyo-Jun;Ko, Gwon-Hyun;Ryou, Hong-Sun
    • Fire Science and Engineering
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    • v.27 no.1
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    • pp.31-38
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    • 2013
  • The pressurized smoke control system is important for fire safety in building because it is directly concerned with egress time of people. Even though the damper plays an essential role in the pressurized smoke control system, the phenomena of backflow smoke occurs for a certain the damper position. The research for a position of damper effects on distribution of air flow at the fire door is not performed. In this study, numerical simulation using FDS 5.5 was carried out to analyze the effect of the position of damper on flow distribution at the fire door. To simulate real situation, effects of opening and closing of fire door was considered. As a result, when HRR was between 200 kW and 400 kW, in the case which the damper was on the opposite wall of the fire door, the back flow to the vestibules was large compared to the two other cases of damper position. But when HRR was above 400 kW, Effect on damper position was not occurred.

A Numerical Study for the Atrium Smoke Control by Fire Shutter and Evacuation (방화셔터를 이용한 아트리움 제연과 피난안전에 관한 수치해석 연구)

  • Jeon, Heung-Kyun;Choi, Young-Sang;Choo, Hong-Lok
    • Fire Science and Engineering
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    • v.24 no.5
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    • pp.50-59
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    • 2010
  • Four fire scenarios, as the cases of fire sizes of 2 MW and 5 MW, and no installation and activation of atrium fire shutter for dormitory building of Daegu 'D college', were developed and fire simulations were run using FDS (ver. 5.5.0) and Pathfinder 2009 programs. By assessing fire and evacuation, the effects of atrium fire shutter and vents on the smoke control of atrium were evaluated and this study also analyzed fire hazard and egress safety for occupants in the dormitory. Fire shutter's preventing smoke transport around atrium was much effective, but smoke layer descended down the design limit of smoke height and kept about 2 m height from the atrium floor in all cases because flow rate through vents was not enough. For the case of 5 MW fire and no fire shutter, fire hazard was higher due to visibility than temperature and allowable egress time to stairwell was short less than 5 seconds for the occupants on the floors of 4F to 7F. For total occupants, egress time out of main doorway was calculated about 136 seconds. It is sure that additional systems improving the performance of smoke control need to be installed for more safe evacuation.

Numerical Simulations on Reduction of Toxic Gas Propagation at High-Rise Apartment Building Fires (계단형 공동주택 화재시 독성가스 전파 저감에 관한 수치해석적 연구)

  • Lee, Seong-Chul;Hong, Yi-Pyo;Park, Young-Rok
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2008.04a
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    • pp.255-258
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    • 2008
  • 본 연구에서는 이전의 연구를 통해 계단형 공동주택 화재 시 재실자 피난특성 및 연기거동에 관한 연구를 실물실험을 통해 수행한 바 있으나 이때 야기된 문제점들을 적절한 방재설비를 도입함으로써 일부 해소하고자 하였다. 따라서 본 연구에서는 이전의 연구와 동일한 대상 건물과 조건에서 수치해석을 수행하며 특히 계단실에 방재설비(배연팬 등) 설치 유 무에 따른 독성가스의 전파 특성 및 최상층까지의 도달시간등을 비교 검토하였다. 계단형 공동주택에서 층간에 배연팬이 설치되어 작동되는 경우가 배연팬이 없는 경우보다 약 45%의 CO 방출량을 줄일 수 있을 것으로 판단되지만 1층 출입구를 통해 유입되는 공기량은 배연팬이 없는 경우가 배연팬이 설치되어 작동되는 경우보다 약 23% 크기 때문에 이로 인해 제연풍속의 증가를 가져올 수도 있을 것이다.

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Numerical analysis on effect of hole size on Emergency Evacuation Support System (수치해석을 통한 비상피난지원 시스템의 급기구 크기에 따른 유동분석)

  • Kim, Ji Tae;Park, Won Hee;Lee, Duck Hee;Ro, Kyoung-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.4
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    • pp.324-329
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    • 2020
  • The emergency evacuation support system provides a safe means of evacuation by preventing the inflow of smoke through the formation of a smoke shield curtain in fire situations and pressurizing fresh air to the inside of the smoke shield curtain. In this study, numerical analysis was performed to examine the effects of the hole size on the flow inside the smoke curtain. As the air supply size decreased, the flow rate through the air supply was formed relatively uniformly from the inlet to the outlet length of the emergency support system. In addition, the size of the air supply hole was more than 20 mm, the flow rate was very low near the outlet, so the air supply hole size should be smaller than 20 mm. In addition, the minor loss of the air supply hole was calculated to be K = 1.5 from the numerical results. Therefore, the proper design of an emergency evacuation support system is possible using the flow characteristics according to the size and minor loss of the air supply hole.

Numerical Study of the Factors Affecting Fire Flow Velocity in the Case of Interior Fire in an Apartment Building (공동주택 화재 시 화재풍속에 영향을 미치는 인자들에 관한 수치해석적 연구)

  • Kim, Byeongjun;Seo, Chanwon;Shin, Weon Gyu
    • Fire Science and Engineering
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    • v.30 no.4
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    • pp.14-19
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    • 2016
  • When an interior fire occurs in an apartment building, pollution of the entrance area by fire smoke before an air fan operates makes the evacuation of people very difficult aswhen the fire doors are opened. Numerical simulations using Fire Dynamics Simulator were conducted to determine the impact of a sprinkler on the fire flow velocity. The fire flow velocity was compared depending on the presence of sprinklers and the sprayed droplet size. The configuration and actual dimensions of an apartment building were used in the numerical simulations. The simulation results showed that fire flow velocity becomes smaller when a sprinkler is installed. In addition, the smaller droplet size results in a smaller fire flow velocity because smaller droplets can be evaporated more easily.

Influence of the Fire on Emergency Evacuation Support System (대공간용 비상피난지원 시스템에 화재가 미치는 영향 분석)

  • Kim, JiTae;Sung, Kun Hyuk;Park, Won Hee;Lee, Duck Hee;Woo, Jun You;Ro, Kyoung-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.5
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    • pp.626-631
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    • 2018
  • An emergency evacuation support system is used to maintain evacuation routes by pressurizing a space inside screens. In cases of fire, it is important to understand the thermal distributions in the tunnel for preventing system failure. In this study, we numerically investigated the effect of fire on an emergency evacuation support system in a large fabric store with some fire scenarios with different combustibles. The critical temperature for system failures was assumed to be $200^{\circ}C$. As a result, the highest temperature was predicted in the ceiling part due to the effect of a ceiling jet, and the fire safety of the screen was secured at distances of 20 to 30 m according to the heat release rate. To prevent the inflow of smoke into the system, it is necessary to maintain more than 5 Pa if positive pressure inside the smoke screen. The results of this study could be useful for designing an emergency evacuation support system.

Comparison of Egress Modeling and Experiments for Joint Flow Rate in the Staircase (피난계단 합류 시 유동률에 대한 피난실험 및 모델링 비교)

  • Hwang, Eun-Kyoung;Woo, Sujin;Kim, Jong-Hoon;Kim, Woon-Hyung
    • Fire Science and Engineering
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    • v.28 no.6
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    • pp.41-46
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    • 2014
  • Junction at the staircase is one of key factors for building egress analysis. The most important factor is the congestion at the door or somewhere connecting from bigger area to smaller one. The other factor is the congestion in the staircase. It happens when people from upper floors meets people from the connecting floor. Especially egress situation at the high-rise building is worse. The simulation of the junction is only described by physical agent algorithms in egress model. For that reason, the description of phenomena will validate with the result of experiment and estimate the gap between modeling and experiment. In this research, the experiment of the junction and the simulation was conducted and validated. The gap between the experiment and the modeling was estimated. The flow rates of modeling were lower than the modeling.

Experiments of Egress Behavior When Subway Car Stops on Railroad (지하철 차량 선로 정차 시 피난 행동에 관한 실험)

  • Kim, Jong-Hoon;Kim, Woon-Hyung;Lee, Duck-Hee;Jung, Woo-Sung
    • Fire Science and Engineering
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    • v.26 no.3
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    • pp.1-7
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    • 2012
  • When the subway car stop on track, passengers have to overcome a height of 1.2 m from floor level of the subway car to the level of track for evacuation. In this experiments, participates in the group of twenties or under ages were rapidly jumping down from the subway car. However, Most elderly group were not easy to overcome the height without help of others and some of them were fell and injured. In case of merging flows, the flow rate of the group of twenties was lower than the other cases. If fire occurred in the train and train stopped in the tunnel, it will be needed a lot of total evacuation time because of the heigh difference and wall effect from subway car to outside.

Research on the support system and reinforcement range of cross passage tunnel (피난연결통로터널의 지보패턴 및 보강범위 연구)

  • Jung, Min;Han, Ki-Hwan;Park, Jin-Won;Baek, Kyung-Min;Moon, Hoon-Ki
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.12 no.3
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    • pp.201-213
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    • 2010
  • Recently, plans of tunnel and construction have increased. Unfortunately, the more we have tunnels, the more we have accidents in there. Because an accident or a fire in the tunnel is fatal to user safety, social concerns are focusing on the disaster prevention facilities. Cross passage tunnel is regarded as one of the useful disaster prevention facilities, which is increasing, while there were only few studies about the support system. This study tried to verify whether the support system is appropriate or not with empirical methods-theoretical methods and back analysis using measurement data. Additionally, we also looked into the range of reinforcement in accordance with strength/stress ratio of rock mass.

A Study on the Safety Assessment of Water-based Firefighting Training Center using Fire Dynamics Simulation (FDS를 활용한 수소화 훈련장 안전성 평가에 관한 연구)

  • Doyoeng Park;Junho Kim
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.30 no.4
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    • pp.317-323
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    • 2024
  • According to the section A-VI/3 of the International Convention on Standards of Training, Certification and Watchkeeping for Seafarers (STCW), Water-based firefighting training center is mandatory to obtain onboard certificates. This space, being similar to fire situations on ships requires that safety measures be quantified to ensure occupant safety and establish operational standards. For fire safety evaluation, cases were designed based on the presence or absence of smoke control equipment using Pyrosim based on Fire Dynamics Simulation (FDS). Vector analysis was performed to evaluate flow of smoke and heat. Available safe escape time / required safe escpae time (ASET/RSET) analysis was conducted to evaluate safety by comparing the interpreted numerical results through Pathfinder. During safety evaluation of the current operational condition, the appropriateness of the function of each smoke control equipment was numerically and visually indicated. The emergency situation with dust collector stopped was expressed by each evacuation time and safety margin of 111.2 seconds, suggesting that be used as a standard of evacuation time.