• Title/Summary/Keyword: Apartment fire

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A Study on Improvement of Connection Method of Underground Parking Lot SP Equipment Water Supply Pipe for Effective Fire Activities (효과적인 소방활동을 위한 지하주차장 스프링클러설비 송수배관 연결방식의 개선에 관한 연구)

  • Son, Gae-Seong;Choi, Ji-Hun;Choi, Don-Mook
    • Journal of the Korea Safety Management & Science
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    • v.17 no.4
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    • pp.161-169
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    • 2015
  • A fire sprinkler system is very important to extinguish fire in the building. The sprinkler system initiates sprinkler discharge if the detection system identifies a developing fire and opens the pre-action valve. However, pre-action fire sprinkler systems mainly installed in the underground parking lot at the apartment complex do not properly operate at fire if the connection type of fire sprinkler systems does not properly installed and operated. This study identified the relationship between fire dispersion & damage and the connection type of water supply in the sprinkler system from many fire cases at the apartment complex in South Korea. In addition, this study also identified the water supply differences and characteristics between South Korea and foreign countries. The main purpose of this study is also to improve the water connection types in the sprinkler system that can reduce the potential failures of pre-action valve operation through electrical signal system. The study also suggests the improvement plan for water connection types in pre-action fire sprinkler system that can minimize potential failure of pre-action fire sprinkler system. The suggestions for revising the fire safe standard in South Korea includes letting the water supply pipe of sprinkler system water inlet connect to the second side of pre-action valve and the water flow device that can minimize potential failure of sprinkler system.

The Efficient Management Plans for the Lightweight Partition Walls and Evacuation Space in Apartment Houses (아파트에 설치된 경량칸막이 및 대피공간의 관리방안 모색)

  • Shin, Hyo-Jin;Yun, Ji-Hui;Kong, Ha-Sung
    • Journal of the Korea Safety Management & Science
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    • v.17 no.1
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    • pp.53-66
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    • 2015
  • This study classified the study subjects as apartment residents and managers, and conducted the descriptive statistics of research questions related to the effectiveness of the lightweight partition walls and the evacuation space. This study also conducted T-test and Anova to find the different perceptions of the lightweight partition walls and the evacuation space, and the different perceptions of related laws according to the characteristics of the residents and managers. The findings and suggestions were as follows. Firstly, strengthening of the Senior Fire Safety Manager system to prevent the insolvency of fire safety management due to the affiliate. Secondly, implementing enhanced penalties in accordance with not implementing residents education, in order to prevent not smoothly delivering manager trained education to residents. Thirdly, adjusting hands-on training time according to the gender of the managers to supplement women's relatively low perceptions of lightweight partition. Fourthly, mandating evacuation guidance stickers on the evacuation space for residents to remove obstacles in the evacuation space. Finally, establishing regular residents education system in order to improve the awareness of the related laws for residents residing over 16th floors.

An Experimental Study of Fire Risk Characteristic by Extended Balcony of High-Rise Apartments in Fire (고층아파트 화재시 발코니 확장에 따른 화재 위험성에 관한 실험 연구)

  • Kim, Woo-Suk;Kim, Wha-Jung;Lee, Gwang-Won;Lee, Ji-Hee
    • Journal of the Korean Society of Safety
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    • v.27 no.2
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    • pp.65-71
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    • 2012
  • Changes in the styles of communities are leading of increases in the number of high-rise apartments and commercial-apartment structures. Tall high-rise structures, while presenting unique economies of scale and cost effectiveness, tend to be highly engineered and complex structures. In the event of a fire, this complexity in design also results in a complexity in the behavior of fire propagation and control. High-rise structures are among the most potentially dangerous due to the high population density in the building, and the inherent limitations on evacuation and on fire control services. One of the most critical points of fire propagation is the movement of fire through the outer wall structures. Controlling such propagation is essential in controlling the spread of the fire throughout the building itself, as well as controlling the potential for its spread to adjacent buildings. In this study, we will be examining the potential for fire control design and effects mitigation using a 1/4.5 scale model. The primary focus of the study will be the effects of extended balconies into the structure of high-rise apartments. The authors will also consider the effectiveness of reduced-scale model tests.

Study of the Improvement of False Fire Alarms in Analog Photoelectric Type Smoke Detectors (아날로그 광전식 연기감지기 비화재보 개선에 대한 연구)

  • Seo, Byung Keun;Nam, Sang Gu
    • Fire Science and Engineering
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    • v.30 no.5
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    • pp.108-115
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    • 2016
  • Fire detectors play an important role in alerting the related people to the initial stages of fire to protect assets and life. Therefore, the performance in detecting fires in the early stages without the risk of false alarms is important. Owing to a recent revision of the national fire safety standards to install smoke detectors in living rooms used for sleeping, staying, hospitalizing in apartment house/efficiency apartment/lodging facility/medical facility/facility for elderly and young, the application of smoke detectors is increasing. On the other hand, there is lack of research in preventing false alarms. This study improved algorithms to prevent false alarms in analog photoelectric smoke detector's due to sudden dust and better classify pollution and fire signals through a self-compensatory function. Through this study, alternatives are suggested to reduce the number of false alarms of Analog Photoelectric smoke detectors, and prevent financial losses due to false alarms.

A Study on Securing Safety for High Rise Building Fires - Applying Active Fire Escape Systems -

  • Myung Sik, Lee;Sung Jae, Han
    • International Journal of High-Rise Buildings
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    • v.11 no.3
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    • pp.227-240
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    • 2022
  • Under the Korean Enforcement Decree of the Building Act, all high story apartment houses more than 5 stories high are mandated to install a fire evacuation system to ensure safe evacuation from fire accidents and providing quick and easy bidirectional escape route when main entrance is blocked by flame or toxic smoke. However, the current fire evacuation system shows a lack of understanding from residents and thus is widely ignored for having insufficient safety functions, especially vis-à-vis fire emergencies. Studies have found that an alternative evacuation method, the escapable fire evacuation system, has been analyzed for safety evaluation compared with the conventional passive fire escape system and can bring efficient and safer solutions, providing high rise residents escape from fire accidents. Evaluation for safety evacuation has been performed by the Fire Dynamics Simulation and applying Pathfinder simulation. This resulted in providing appropriate escape routes within the safety escape time and allowed for people in high rise building fires to get to safety.

A Study on the Ventilation Performance and Fire Characteristics with Different Types of Openings in External Wall of One Side Corridor Type Apartment (편복도형 아파트의 복도 외벽체 개구부 형태에 따른 환기성능 및 화재특성에 관한 연구)

  • Ko, Myeong Jin;Choi, Do Sung;Do, Jin Seok
    • KIEAE Journal
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    • v.10 no.5
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    • pp.87-93
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    • 2010
  • The objective of this study is to verify the safety in case of fire and change of residential environment for different wall construction approaches in a stairways apartment house. In order to confirm that case_1, which is current case that most of wall is opened and the case 2, which upper part of wall is limitedly opened are compared and analyzed based on simulations of fire, escape and natural ventilation performance. The analysis reveals that possible escape time for case 1 was more than 600 seconds and for case 2 was 195 seconds. Since the escape times for both cases were over 128 seconds, it would be reasonable to assume that every resident would escape. The simulation results on natural ventilation performance shows the air change per hour of case 1 and case 2 were .19n/h and .16n/h and there was 1.2 times difference. However, the difference was too insignificant and it could be seen as that different approaches on wall construction would not significantly influence on natural ventilation performance.