• Title/Summary/Keyword: 총 대피시간

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An Evacuation Route Assignment for Multiple Exits based on Greedy Algorithm (탐욕 알고리즘 기반 다중 출구 대피경로 할당)

  • Lee, Min Hyuck;Nam, Hyun Woo;Jun, Chul Min
    • Journal of Korean Society for Geospatial Information Science
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    • v.24 no.1
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    • pp.69-80
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    • 2016
  • Some studies were conducted for the purpose of minimizing total clearance time for rapid evacuation from the indoor spaces when disaster occurs. Most studies took a long time to calculate the optimal evacuation route that derived minimum evacuation time. For this reason, this study proposes an evacuation route assignment algorithm that can shorten the total clearance time in a short operational time. When lots of exits are in the building, this algorithm can shorten the total clearance time by assigning the appropriate pedestrian traffic volume to each exit and balances each exit-load. The graph theory and greedy algorithm were utilized to assign pedestrian traffic volume to each exit in this study. To verify this algorithm, study used a cellular automata-based evacuation simulator and experimented various occupants distribution in a building structure. As a result, the total clearance time is reduced by using this algorithm, compared to the case of evacuating occupants to the exit within shortest distance. And it was confirmed that the operation takes a short time In a large building structure.

An Optimal Model for Indoor Pedestrian Evacuation considering the Entire Distribution of Building Pedestrians (건물내 전체 인원분포를 고려한 실내 보행자 최적 대피모형)

  • Kwak, Su-Yeong;Nam, Hyun-Woo;Jun, Chul-Min
    • Journal of Korean Society for Geospatial Information Science
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    • v.20 no.2
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    • pp.23-29
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    • 2012
  • Existing pedestrian and evacuation models generally seek to find locally optimal solutions for the shortest or the least time paths to exits from individual locations considering pedestrian's characteristics (eg. speed, direction, sex, age, weight and size). These models are not designed to produce globally optimal solutions that reduce the total evacuation time of the entire pedestrians in a building when all of them evacuate at the same time. In this study, we suggest a globally optimal model for indoor pedestrian evacuation to minimize the total evacuation time of occupants in a building considering different distributions of them. We used the genetic algorithm, one of meta-heuristic techniques because minimizing the total evacuation time can not be easily solved by polynomial expressions. We found near-optimal evacuation path and time by expressing varying pedestrians distributions using chromosomes and repeatedly filtering solutions. In order to express and experiment our suggested algorithm, we used CA(cellular automata)-based simulator and applied to different indoor distributions and presented the results.

An Experimental Study on Change of Evacuation Critical Depth in Underground Space (실증실험기반 지하공간 침수 대피 한계수심 변화에 관한 연구)

  • Kim, Yerim;Keum, Hojun;Ko, Taekjo;Joo, Jaeseung;Jung, Dojoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.80-80
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    • 2021
  • 2020년은 장마와 태풍으로 인해 중부 및 남부지방에 폭우가 발생하여 강남역을 비롯한 지하철 역사와 지하 주차장 등 많은 지하시설이 침수되었고, 부산에서는 침수된 지하차도에 진입한 차량의 운전자가 사망하는 등의 사고가 발생하였다. 지하에 설치된 시설들은 침수가 발생할 경우 대부분 출입구를 통해 유입되는 물을 거슬러 대피해야 하므로 낙상과 그로 인한 익사 등 자칫 큰 인명피해를 초래할 수 있어 특별히 주의할 필요가 있다. 대피 여부를 결정하고 그에 필요한 시간을 계산하기 위해서는 안전하게 대피 가능한 최대수심(한계수심)을 결정하는 것이 필요하다. 현재 한계수심을 제시한 여러 연구가 있지만 대부분 소수의 성인만을 대상으로 한 실험 결과이기 때문에 성별, 연령, 체중 등 다양한 유형의 사람을 고려한 대피방법 제시가 필요하다. 이에 본 연구에서는 실험 참가자의 유형(성별, 연령, 체중, 신장)에 따른 대피시간의 차이를 고려한 한계수심을 제시할 수 있도록 하였다. 총 308명이 실험에 참여하였으며, 이중 남성은 164명, 여성은 144명이었다. 참가자의 연령은 14세부터 75세까지이며, 신장은 최소 145cm에서 최대 187cm, 체중은 35kgf에서 110kgf 범위이다. 대피시간은 물이 흘러 내려오는 5.1m 길이의 계단을, 난간을 잡은 채 거슬러 올라가는 시간으로 설정하였으며, 계단 상층부의 수심이 30cm일 때와 40cm일 때(한계수심 조건), 2회 측정하였다. 또한, 측정이 종료된 후, '안전하게 대피 가능할 것으로 예상되는 수심'을 선택하도록 하여 참가자가 체감한 실험 난이도를 간접적으로 확인하고 향후 연구에 활용할 수 있도록 하였다. 수집된 자료를 분석한 결과 여성의 경우 수심 30cm와 40cm의 평균 대피시간이 4초 정도의 차이가 나타났으나, 남성의 경우 유의미한 차이가 나타나지 않았다. 또한 '안전하게 대피 가능할 것으로 예상되는 수심'에 대한 답변으로 다수가 실험의 최대 수심 조건인 40cm 이상을 선택하였다. 이와 같은 결과를 보아, 실험의 난도가 높지 않았다고 예상할 수 있으며, 그 원인은 참가자의 안전을 고려해 실험 조건을 난간을 잡은 채 보행하도록 설정한 것이 한계수심을 증가시키는 결과를 가져왔다고 볼 수 있다. 유형에 따른 대피시간의 차이를 분석하기 위해서는 실험의 한계수심 조건을 높이거나, 난간을 잡지 않고 보행할 수 있도록 안전장치를 추가하는 등, 실험조건의 변화가 필요할 것으로 판단되며, 추가적으로 난간을 잡은 채 보행하는 것이 한계수심을 얼마나 높일 수 있는지에 대한 검토를 통하여 정량적인 대피가능 시간을 제시할 수 있을 것으로 사료된다.

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Experimental Study on Evacuation Efficiency in the Airplane Cabin on Emergency (항공기 비상상황 시 기내 대피 효율성에 관한 실험적 연구)

  • Jung Hyun Yoo;Young Sam Lee;So Jung Na;Jong Hoon Kim
    • Journal of the Society of Disaster Information
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    • v.20 no.1
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    • pp.128-137
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    • 2024
  • Purpose: This study was conducted to investigate, through experimental methods, the efficiency of passenger movement and evacuation in the event of an emergency situation on an aircraft. Method: The experiment was conducted a total of 4 times, including 3 scenarios. The three situations were evacuation without luggage, evacuation with carry-on baggage, and evacuation with carry-on baggage and carrier. In the experiment, time was measured based on recorded video. Result: The total evacuation time was found to be approximately 1.5 times higher for the evacuation with luggage, and approximately 3.5 times higher for the evacuation with luggage and 3 carriers compared to the evacuation result in a situation where nothing was carried. As a result of applying the evacuation simulation, it was found that there was a difference from the experimental results. In particular, consideration of complex situations such as carrying out and moving carriers is considered to be a situation that requires more technical research. Conclusion: Quantitive data was obtained to determine how carry-on luggage and carrier affect evacuation.

A Study on Improvement of Emergency Evacuation Facilities in Dorim-Cheon Basin (홍수기 도림천 유역 진출입차단 시설 및 대피시설 운영방안)

  • Kim, Min Seok;Yoon, Sun Kwon;Choi, Hyeon Seok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.461-461
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    • 2021
  • 도림천 유역은 4개 자치구(관악, 구로, 동작, 영등포)에서 관리하고 있으며, 강우 발생 시 침수취약지역 맞춤형 행동 매뉴얼을 통해 운영된다. 그러나 여름철 집중강우 발생 시에는 도달시간이 짧고 수위가 급격히 상승하는 유역의 특성으로 하천 내 고립사고가 빈번히 발생하고 있다. 최근 10년('11년~'20년)간의 조사결과에 따르면 도림천 중·하류 구간에서 발생한 고립사고는 총 27회로 나타났다. 본 연구에서는 도림천 유역을 대상으로 도시홍수 예·경보 전달시설, 진입차단 시설, 그리고 고립 시 대피시설의 설치현황을 살펴보고 도시하천에 적합한 재난대피시설 운영 및 설치방안을 제안하고자 한다. 이는 짧은 시간에 수위가 급변하는 도시하천의 고립사고 최소화와 더불어 신속하고 안전한 하천시설운영 및 자치구 통합 맞춤형 행동 매뉴얼 개선에 기여하고자 한다.

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An Analysis of the Appropriate Number of People Per Apartment Household According to NFPA 101 (NFPA 101에 의한 아파트 한 세대당 적정 수용인원 분석)

  • Cho, Ji-Eun;Kong, Ha-Sung
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.4
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    • pp.331-337
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    • 2020
  • The study analyzes the appropriate number of people per a household by applying an evacuation simulation to a 27-floor apartment in accordance with the NFPA 101 standard. The results of the analysis are as follows. First, if there are three people residing in each household, there would be 156 households in total, of which 85.25% were evacuated within 5 minutes. Second, 208 households with 4 residents were evacuated within 5 minutes. Third, if there are five people residing in each household, there would be a total of 260 households and 71.92% of residents were evacuated within 5 minutes. Lastly, 62.82% of the 312 households, each consisting of 6 people, were evacuated within 5 minutes. Measures to reduce evacuation time include determining the width of the stairs according to the number of people indoors, the number of floors in the building, the slope of stairs, and the users' characteristics, the design reflecting the ventilation conditions of the stairs, the installment of outdoor evacuation stairs, two-way stairs, evacuation lift, and the installation of an evacuation safety zone for people to evacuate outside of the building in the middle floors. In addition, measures, such as the mandatory installation of automatic emergency door open-close device to the rooftop, are required to facilitate rooftop evacuation.

A Occupant Load Density and Computer Modelling of Evacuation time in Office Buildings (사무소 건물의 거주밀도 분포와 피난시간 예측)

  • Kim, Un-Hyeong;Rui, Hu;Kim, Hong
    • Fire Science and Engineering
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    • v.13 no.3
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    • pp.35-42
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    • 1999
  • A occupant load density of contemporary office buildings were surveyed by a building w walk through procedure in Korea. The survey results of ten office buildings are range from 1 2 2 2 213.14 m !person 041.4 ft !person) to 22.69 m /person (244.34 ft !person) with 95% confidence l level and the mean occupant load density is 17.92 m2/person 092.87 ft2/야rson). The impacts of occupant load on evacuation flow time was analyzed by applying time-based egress m model, SIMULEX with various occupant load densities from previous studies. I In order to demonstrate the validation of egress modeling method, fire evacuation exercise a and computer simulation were used to simulate the actual evacuation plan for a high-rise office building. An analysis and comparison of the results of these approaches was made to i illustrate the influence of model limitations on the result of prediction The result of the study shows that the introduction of occupant load concept in building c code of Korea is essential to achieving resonable building life safety design in future.

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Reliability evaluations of time of concentration using artificial neural network model -focusing on Oncheoncheon basin- (인공신경망 모형을 이용한 도달시간의 신뢰성 평가 -온천천 유역을 대상으로-)

  • Yoon, Euihyeok;Park, Jongbin;Lee, Jaehyuk;Shin, Hyunsuk
    • Journal of Korea Water Resources Association
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    • v.51 no.1
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    • pp.71-80
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    • 2018
  • For the stream management, time of concentration is one of the important factors. In particular, as the requirement about various application of the stream increased, accuracy assessment of concentration time in the stream as waterfront area is extremely important for securing evacuation at the flood. the past studies for the assessment of concentration time, however, were only performed on the single hydrological event in the complex basin of natural streams. The development of a assessment methods for the concentration time on the complex hydrological event in a single watershed of urban streams is insufficient. Therefore, we estimated the concentration time using the rainfall- runoff data for the past 10 years (2006~2015) for the Oncheon stream, the representative stream of the Busan, where frequent flood were taken place by heavy rains, in addition, reviewed the reliability using artificial neural network method based on Matlab. We classified a total of 254 rainfalls events based on over unrained 12 hours. Based on the classification, we estimated 6 parameters (total precipitation, total runoff, peak precipitation/ total precipitation, lag time, time of concentration) to utilize for the training and validation of artificial neural network model. Consequently, correlation of the parameter, which was utilized for the training and the input parameter for the predict and verification were 0.807 and 0.728, respectively. Based on the results, we predict that it can be utilized to estimate concentration time and analyze reliability of urban stream.

Estimation of Vehicles Evacuation Time by using Lane-based Routing Method (차로기반 경로유도방식을 이용한 차량의 소개시간 추정)

  • Do, Myungsik
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.12 no.6
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    • pp.29-36
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    • 2013
  • This study is the fundamental research to establish evacuation planning and to analyze evacuation planning characteristics in Gumi-city based on existing network and traffic characteristics data. Assuming an emergency situation, it compared with evacuation time estimates between using existing traffic signal system and proposed lane-based routing method through micro simulations. As a result, using existing traffic signal system could not affect the evacuation times in each level of emergency conditions. However this study found that proposed lane-based routing method is very effective to reduce an evacuation time compared with using existing traffic signal system. Also the proposed method is verified to reduce an evacuation time especially in extreme emergency circumstances.

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.