• Title/Summary/Keyword: 피난 안전성

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A Study on risk management measurers about High-rise APT (고층아파트 위험관리 방안)

  • Kim, Jong Won
    • Journal of the Society of Disaster Information
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    • v.9 no.2
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    • pp.178-187
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    • 2013
  • This paper studied the potential risk of high-rise apartment by analysis of the loss ratio of housing fire insurance, statistics related high-rise apartment fire, and the insured amount of housing fire insurance, and, found that it is so high and need the improvement of risk management measures for high-rise apartment. Accordingly, the study recommend the composit risk management measures including preventing of fire expanding for higher stories, a shelter for people of hire-rise apartment, and sprinkler protection, etc. Also as risk transfer measures, the composit risk measures for high-rise apartment includes the full insurance of housing fire insurance, third party property liability insurance, and development of endorsement for special risk such as a typhoon, liability etc.

A Study on Performance-Based Design Enforcement (성능위주설계 시행의 개선방안)

  • Lee, Yang-Ju;Ko, Kyoung-Chan;Park, Woe-Chul
    • Fire Science and Engineering
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    • v.26 no.1
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    • pp.68-73
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    • 2012
  • Performance-based design (PBD) for large scale high rise buildings has been enforced to secure fire and evacuation safety since July 1, 2011. As various types of trial and error were expected in the early stage, to suggest solutions to the problems that might be followed by the enforcement, the regulations on PBD were reviewed and a questionnaire survey to fire protection specialists was carried out. It was confirmed that PBD is required for large scale apartment buildings, and specific and detail criteria for PBD methodology and evaluations, education for PBD to personnel who design and evaluate are also in need.

A study on the Optimum Capacity of Citadel (선원대피처의 적정규모에 관한 연구)

  • Kim, Won-Ouk;Kim, Chang-Jae;Chae, Yang-Bum
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2011.11a
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    • pp.142-143
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    • 2011
  • As mentioned above, various safety measures are considered and discussed as hijacking of Korean vessels by pirates is increasing. Thus, the standard for ship's facilities has been partially revised and setting up an evacuation shelter on all vessels sailing dangerous zone has been reinforced. This research aims to discuss crew Citadel set up that has to sail long haul. In addition, measures against potential gas flow have to be taken due to recent pirate armed and portable rocket attacks. There is also a possibility of fire outbreak within the vessel due to its nature. Thus, this research assesses the relevant number of crew Citadel theoretically. It will also make a model by estimating the relevant number of shelters in the event of fire outbreak and implement simulation using FDS.

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A Study on the Development of System for Dispatcher (상황실 화재 접수자 중심의 화재상황별 시스템 개발 연구)

  • Choi, Doo-Chan;Ko, Min-Hyeok;Min, Se-Hong
    • Journal of the Society of Disaster Information
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    • v.16 no.1
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    • pp.203-209
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    • 2020
  • Purpose: This study aims to support the dispatcher to analysis the architecture type of fire. Method: Analysis the dispatch protocol guideline (released by gyunggi fire brigade) and make the dispatch scenario by site, combustibles, evacuation, fire extinguish systems. Result: After making scenario, develop the system (for dispatcher), is based on the tablet PC. Conclusion: Dispatch systems apply not only fire but rescue and disaster. This study focus on the fire, but It is need to expend the rescue and disaster. in korea, Fire Safety Evaluation and Multishop DB are possible to link to this system.

The Development of a Functional Pressure Controller in Smoke Management Systems for the Fire Safety of Buildings (화재시 제연 및 피난을 위한 기능성 차압 조절장치 개발에 관한 연구)

  • Jung, Ki-Chang;Kim, Jeong-Hun;Lee, Jung-Yun
    • Journal of the Korean Society of Safety
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    • v.19 no.1
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    • pp.44-48
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    • 2004
  • The smoke and toxic gases generated from the building fires are proved to cause human death. Therefore, the necessity and significance of smoke control have been emphasized, and lots of studies for developing improved smoke management system have been carried out. In this study, the experiments were conducted to evaluated a function and performance in newly developed smoke management system using mechanical pressurization. As a result of this experiment, the differential pressure was 40Pa${\sim}$60Pa and the air velocity through the door was 0.7m/s between safety zone and fire zone. The functional pressure control equipment which could make proper pressure and maintain differential pressure between safety zone and fire zone was developed. And it will give a lot of helps to evacuation activity for peoples in building and fire fighting.

Study of the Fire Risk of Occupants During Pilotis Space Fires (필로티 공간의 화재 시 재실자의 위험성에 관한 연구)

  • Choi, Seung-Bok;Choi, Doo-Chan;Choi, Don-Mook
    • Fire Science and Engineering
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    • v.30 no.5
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    • pp.144-150
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    • 2016
  • An apartment house with a pilotis that raises the architectural volume and provides a space for circulation is becoming popular. With the popularity of pilotis in apartment houses, people also have a keen interest in the potential fire risk at the pilotis. As residents can only access their apartment house through the pilotis, there is a risk to the occupants if there is fire there. Therefore, this study evaluated the pilotis fire cases of urban multifamily housing to conduct a Fire Dynamics Simulator (FDS) and Fire Evacuation Simulation (FES). Through these two simulation methods, it is possible to validate the riskiness of fire at an apartment with a pilotis. The study identified that the toxic gases and flame spread out to the pilotis within hundred seconds after ignition. In addition, the toxic gases and flame also reach the second floor within three seconds and the entire building within 735 seconds if the entrance doors at the pilotis are opened. On the other hand, the FES simulation results showed that it also takes about approximately 609 seconds to excavate from the apartment house with a pilotis. Therefore, this research shows that an apartment house with a pilotis can ensure the building occupants' lives and their safety if there is fire.

A Study on the Suitability Impact Factors of a Comprehensive Park as an Emergency Shelter for Earthquakes (지진대피공간으로써의 공원녹지 적절성 평가지표 연구)

  • Cao, Lin-Sen;Kang, Tai-Ho
    • Journal of the Korean Institute of Landscape Architecture
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    • v.45 no.4
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    • pp.62-70
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    • 2017
  • Following the September $12^{th}$, 2016 earthquake in Gyeongju-city, the observation can be made that South Korea is not a non-earthquake country. Because of its particular characteristics, urban green spaces are good sites for protection during an earthquake but studies regarding the suitability of park green spaces as a form of earthquake shelter are few, making it difficult to highlight the function of park green spaces as emergency shelters. The purpose of this study is to identify indicators for suitability impact factors of comprehensive parks as emergency earthquake shelter zones. Using the Delphi method, three rounds of survey were implemented. According to the analysis results of Average value, CVR, Consultation and Convergence, ten candidate indicators were removed in the candidate group. Twenty-seven suitability impact factors of comprehensive parks were retained, including 8 indicators in the field of safety, 6 indicators in the field of accessibility, and 13 indicators in the field of service effectiveness.

Fire-countermeasures of Majority-used Buildings -Centering around Busan Metropolitan City- (다중이용업소의 소방안전관리방안 -부산광역시(사상구, 사하구, 북구)를 중심으로-)

  • Lee, Soon-Goo;Kong, Ha-Sung;Han, Sang-Yong
    • Fire Science and Engineering
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    • v.22 no.1
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    • pp.54-60
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    • 2008
  • The occurrence of fires in heavily populated multiplex buildings is a serious concern. It causes a great threat to many people and a serious social problem. Whenever this kind of fire happens, the authorities are busy preparing partial countermeasures to control the crisis situations. Luckily, the government has enforced a special law regarding safety supervision of majority-used buildings to prepare the basic countermeasures for the buildings' safety. Recently, the multiplex buildings which have multi type compounds have increased in size by getting bigger and bigger. As there are many people who would need to escape and the complicated structures like mazes in buildings of this type, it is not only difficult to prevent a fire but also easy to cause a large loss of lives. For a better fire safety supervision of the buildings, there needs to be passers and owners' good sense of safety, fire proof of the buildings and education of the fire authorities.

Study on the Available Safe Egress Time (ASET) Considering the Input Parameters and Model Uncertainties in Fire Simulation (화재시뮬레이션에서 입력변수 및 모델 불확실도가 고려된 허용피난시간(ASET)에 관한 연구)

  • Han, Ho-Sik;Hwang, Cheol-Hong
    • Fire Science and Engineering
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    • v.33 no.3
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    • pp.112-120
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    • 2019
  • To improve the reliability of a safety assessment using a fire simulation in domestic PBD, the evaluation method of ASET considering the uncertainties of the input parameters and numerical model of fire simulation was carried out. To this end, a cinema and officetel were selected as the representative fire spaces. The main results were as follows. Considering the uncertainty of the heat release rate, which has the greatest effect on the major physical quantities presented in the life safety standard, significant changes in temperature, CO, and visibility occurred. In addition, when the bias factors reflecting the uncertainty of the numerical model were applied, there were no significant changes in temperature and CO concentration. On the other hand, the visibility was increased considerably due to the low prediction performance of smoke concentration in FDS. Finally, the reason why the physical quantity determining the ASET in domestic PBD is mainly visibility was discussed, and the application of uncertainty of the input parameters and numerical model in a fire simulation was suggested for an accurate ASET evaluation.

Optimization Method for Patient Placement by Floor in Elderly Care Hospital for Evacuation Safety (피난안전성을 위한 요양병원의 층별 환자배치에 대한 최적화방안)

  • Lee, Hong-Sang;Kong, Ha-Sung
    • Journal of the Korea Safety Management & Science
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    • v.22 no.3
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    • pp.43-51
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    • 2020
  • This study analyzed the appropriate placement method by floor for evacuating all occupants during the nighttime through evacuation simulation. The analysis results are as follows. First, when non-self evacuating patients were placed on the first floor, 266 patients and 6 workers were found to be evacuated after 460 seconds. This result shows that it is meaningful to place non-self evacuating patients on the lower floor with a time that is faster than 540 seconds, which is an evaluation criterion set using life Safety standards for human. This result is a time faster than the evaluation criteria of 540 seconds, which is set using the life safety standards, and it can be confirmed that it is meaningful to place non-self evacuating patients on the lower floor. Next, as a result of placing non-self evacuating patients from the first floor to the fourth floor, it was found that evacuation of all occupants required 460 seconds for the first floor, 834 seconds for the second floor, 1,508 seconds for the third floor, and 1,915 seconds for the fourth floor. These results indicate that the placement of non-self evacuating patients on the rest of the floors, except for the first floor, can lead to dangerous results in excess of 540 seconds, which is a flashover time. As a result, it is necessary to place non-self evacuating patients on a lower floor for safe evacuation. The study has limitations except for comparative analysis of changes in evacuation time due to changes in the number of workers at eldery care hospitals and situations in which fire-fighting facilities such as sprinkler facilities operated. It is necessary to study the evacuation time linked to the operation of the fire-fighting facilities and the evacuation time according to the change in the number of workers in the future.