• Title/Summary/Keyword: 피난요구시간

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Egress Safety of Nursing Hospital Considering Egress Guides and Smoke Exhaust System (피난유도자 수와 배연설비를 고려한 요양병원의 피난안전성 평가)

  • Choi, Seung-Ho;Darkhanbat, Khaliunaa;Heo, Inwook;Kim, Kang Su
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.26 no.3
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    • pp.64-71
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    • 2022
  • In this study, fire and egress simulation was conducted for the egress safety evaluation of the nursing hospitals. A fire simulation was performed with or without the smoke exhaust system using the FDS, and the available safe egress time (ASET) of the nursing hospitals was calculated. In addition, an egress simulation considering the characteristics of occupants and egress delay time was performed using Pathfinder, and the required safe egress time (RSET) was calculated. By comparing the ASET and RSET, the egress safety of the nursing hospital with or without a smoke exhaust system was evaluated according to the number of egress guides and the egress delay time. The simulation results show that the number of casualties increased as the egress delay time increased, and the required safe egress time decreased as the number of egress guides increased. In addition, it was found that if a smoke exhaust system with the capacity specified in the KFPA is secured, the available safe egress time can be greatly increased and the number of casualties can be greatly reduced.

Evacuation Time for Performance Based Design (성능 위주 설계를 위한 피난 시간 계산)

  • Jung, Soo-Young;Kim, Tae-Hyun
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2010.04a
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    • pp.179-184
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    • 2010
  • 성능 위주 피난 설계에 있어서 요구피난시간(RSET)을 위한 Simulex 등 피난 시뮬레이션 툴이 사용하고 있는 근본적인 데이터베이스, 즉, 시설 및 군중 조건에 따른 이동 변수, 최대 비유동률(Maximum Specific Flows) 및 경계폭(Boundary Layer Width)을 살펴보고, 트래픽 방정식(Traffic Equation)을 통한 계산 사례 즉, 피난자의 이동 속도 계산 사례, 최소 피난 시간 계산 사례 및 총 유동 용량(Flow Capacity) 수식과 계산 사례를 살펴본다.

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Risk Evaluation and Analysis on Simulation Model of Fire Evacuation based on CFD - Focusing on Incheon Bus Terminal Station (CFD기반 화재 대피 시뮬레이션 모델을 적용한 위험도 평가 분석 -인천터미널역 역사를 대상으로)

  • Kim, Min Gyu;Joo, Yong Jin;Park, Soo Hong
    • Spatial Information Research
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    • v.21 no.6
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    • pp.43-55
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    • 2013
  • Recently, the research to visualize and to reproduce evacuation situations such as terrorism, the disaster and fire indoor space has been come into the spotlight and designing a model for interior space and reliable analysis through safety evaluation of the life is required. Therefore, this paper aims to develop simulation model which is able to suggest evacuation route guidance and safety analysis by considering the major risk factor of fire in actual building. First of all, we designed 3D-based fire and evacuation model at a subway station building in Incheon and performed fire risk analysis through thermal parameters on the basis of interior materials supplied by Incheon Transit Corporation. In order to evaluate safety of a life, ASET (Available Safe Egress Time), which is the time for occupants to endure without damage, and RSET (Required Safe Egress Time) are calculated through evacuation simulation by Fire Dynamics Simulator. Finally, we can come to the conclusion that a more realistic safety assessment is carried out through indoor space model based on 3-dimension building information and simulation analysis applied by safety guideline for measurement of fire and evacuation risk.

Vertical Evacuation Speed in Stairwell of a High-rise Office Building (업무용 고층건물 계단실의 보행속도에 관한 연구)

  • Joung, Suck-Hwan;Yoon, Myong-Oh
    • Fire Science and Engineering
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    • v.29 no.3
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    • pp.13-20
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    • 2015
  • As building height is increased, more careful decisions about the required safe egress time is needed for evacuation. This study analyzed the influence of three training sessions on the vertical speed of evacuation in the high rise building. Evacuation experiments were done in a high-rise office building in Seoul, and we analyzed the vertical evacuation speed as a function of density using a camera. Controlled and uncontrolled total evacuation were compared using the Pathfinder simulation. The process of repeated training, changed the specific stair utilization rate from 6.3% to 39.5%. The vertical evacuation speed as a function of density was analyzed using the equation s = 1.004 ? 0.288D, which is very similar to the equation used in a different study. The total evacuation time of the special controlled total evacuation was reduced by about 25% compared to the simultaneous evacuation.

Study on Stagnation Factors Analysis and Improvement Methods through an Evacuation Experiment (피난실험을 통한 피난시간 지연요인 분석과 개선방안에 관한 연구)

  • Han, Woon-Hee
    • Fire Science and Engineering
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    • v.32 no.2
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    • pp.57-66
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    • 2018
  • The most urgent requirement in the event of disaster and fire in a skyscraper is to establish a system that enables people inside to evacuate safely. Hence, a practical direction needs to give evacuees confidence in the evacuation by reducing the psychological anxiety caused by the relatively large number of people inside and at the same time, the physically prolonged evacuation travel line. Evacuation tests with large numbers of people were conducted three times to solve these challenges and identify phenomena and issues that occurred during the experiment. The results revealed the factors that could cause a delay in evacuation and suggested improvements. The study results of this paper are as follows. First, a recent fire at a multipurpose high-rise resulted in a number of casualties due to a lack of experience with the disaster prevention system. To prevent such cases from occurring in advance, adaptability was achieved by conducting evacuation tests. Second, the data collected in the evacuation simulation statistics and the actual escape drills were compared and analyzed. Third, in the evacuation experiment, a large number of people could not participate in the experiment. The reasons for not participating were analyzed and their impact on the actual evacuation time was confirmed. Fourth, equipment aids were purchased to establish the optimal response measure to the causes of a delay in escape time and the standards for ensuring the safety of the evacuee were specified by developing improvements to minimize the evacuation delay time through comparative before and after analysis of the experiment. These results can be used for fire safety control of skyscrapers to improve the efficiency of evacuation.

Fire and Evacuation Analysis in Environmental Energy Facilities (환경에너지 시설내 화재 및 피난해석)

  • Jeon, Yong-Han;Kim, Jong-Yoon
    • Fire Science and Engineering
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    • v.33 no.3
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    • pp.84-90
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    • 2019
  • In this study, a fire and evacuation inside an electronic equipment room in environmental energy facilities were conducted and evaluated using a numerical analysis method. In the fire simulation, the visual distance, temperature distribution, and CO concentration distribution were analyzed using FDS. Based on the results, the Pathfinder program, which is an evacuation simulation, was used to calculate the evacuation time of the occupants and derive an evacuation safety evaluation. As a result, the Available safe Egress time (ASET) of P-01 and P-05 was 203.3 and 398.6 s, respectively. For the Required safety Egress time (RSET) results, all evacuees were evacuated at all points and the safety of the evacuee was secured this simulation showed that the safety evaluation is based on the non - operation of the fire - fighting equipment to improve the safety, making it possible to secure better evacuation safety performance owing to the fire of other fire - fighting facilities.

Study on Horizontal RSET Evacuation safety verification process Based ASET in Underground Link Multi-Complex building (지하연계 복합건축물 ASET 기반의 수평 RSET 피난안전성 검증 프로세스 연구)

  • Song, Chang-Young;Song, Min-Su
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2015.11a
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    • pp.146-149
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    • 2015
  • 지하연계 복합건축물의 건립이 급증함에 따라 건축물의 피난 성능이 중요시되고 있으며 복잡 다양해진 피난유도에 대한 피난시설 배치와 RSET(Required Safe Egress Time)이 필수적으로 관련 지침에 명시되고 있다. 그러나 RSET에 대한 신뢰성 검증 및 용도별 수용인원 산정 방법이 주관적인 관점에 의해 제시되고 있으며 이런 검증 자료의 검토기준이 정량적이지 않아 안전성 확보가 이뤄지지 않고 있는 것이 현실이다. 따라서 본 연구에서는 지하연계 복합건축물의 피난 안전성을 확보하는데 가장 적합한 검증을 위해 방재 선진국의 ASET 기준을 심층적으로 분석하여 지하연계 건축물 등에서 국내 실정에 맞게 적용할 수 있는 최적화된 ASET을 도출하였다. 이러한 ASET의 신뢰성을 검증할 수 있도록 피난안전구역 및 준하는 구역의 현실 가능성을 분석하고 국내 외에서 상용화되고 있는 피난시뮬레이션 소프트웨어를 통해 건축물의 용도에 따른 수용인원 산정기준의 현실적 방안과 피난경로 설정의 Logic을 감안하여 피난의 안전 및 최단시간 가능성을 고려하였다. 따라서 지하연계복합 건축물에서 요구하는 피난성능과 수용인원의 최적화된 RSET을 정량적으로 도출함에 따라 피난 안전성에 대한 검증 프로세스를 제시하였다.

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A Study on the Evaluation of Evacuation Safety Function of an Elderly Care Hospital (일개 노인요양병원의 피난안전성능 평가에 관한 연구)

  • Kim, Jong-Bum;Kim, Ja-Ok;Back, Eun-Sun
    • Fire Science and Engineering
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    • v.24 no.3
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    • pp.9-19
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    • 2010
  • Recently, Korea is constantly increasing its elderly care hospitals, and requires establishment of general evacuation plan considering old people's behavioral characteristics and physical states in emergency situations such as fire, and etc. In addition, because most of the facility users are patients under serious dementia and stroke, they feel difficulty evacuating by themselves, with differing evacuation time according to each walking status (bed, wheel chair, and various supplementary instruments), which is why it makes it difficult to have them all evacuate. This paper, in order to suggest data reference for designing on the basis of functionality, used various collected data utilizing Simulex to measure evacuation time through the model of elderly care hospital, a medical facility. During the study, several problems were found.

Evaluation on Fire Available Safe Egress Time of Commercial Buildings based on Artificial Neural Network (인공신경망 기반 상업용 건축물의 화재 피난허용시간 평가)

  • Darkhanbat, Khaliunaa;Heo, Inwook;Choi, Seung-Ho;Kim, Jae-Hyun;Kim, Kang Su
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.25 no.6
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    • pp.111-120
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    • 2021
  • When a fire occurs in a commercial building, the evacuation route is complicated and the direction of smoke and flame is similar to that of the egress route of occupants, resulting in many casualties. Performance-based evacuation design for buildings is essential to minimize human casualties. In order to apply the performance-based evacuation design to buildings, it requires a complex fire simulation for each building, demanding a large amount of time and manpower. In order to supplement this, it would be very useful to develop an Available Safe Egress Time (ASET) prediction model that can rationally derive the ASET without performing a fire simulation. In this study, the correlations between fire temperature with visibility and toxic gas concentration were investigated through a fire simulation on a commercial building, from which databases for the training of artificial neural networks (ANN) were created. Based on this, an ANN model that can predict the available safe egress time was developed. In order to examine whether the proposed ANN model can be applied to other commercial buildings, it was applied to another commercial building, and the proposed model was found to estimate the available safe egress time of the commercial building very accurately.

Performance-based Fire Protection Design of Domestic Super High-rise Buildings - Evaluation by ASET and RSET -

  • Roh, Hyeong-Ki
    • Journal of the Korean Society of Hazard Mitigation
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    • v.11 no.2
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    • pp.9-13
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    • 2011
  • The Performance-based fire protection design required to construct super high-rise building is the active measure for the evaluation of fire risks and the establishment of fire protection systems on the basis of engineering analysis, which is more efficient and proper than existing prescriptive-based design. This study applied time-line analysis of RSET is required safe egress time and ASET is available safe egress time with the fire and evacuation simulation to analyze. The result of this study showed the sprinkler system increased ASET and fire detection and alarm system reduced RSET efficiently. Reduced evacuation time influences to secure the life safety. Also it is essential to maintain the fire suppression system and fire detection & alarm system properly. Database of fire movement and evacuation action program are useful for the performance-based design.