• Title/Summary/Keyword: Fire Safety Design

Search Result 683, Processing Time 0.034 seconds

A Study on Design Improvement for Smoke-Control System Using the Pressurization of the Elevator Shaft (승강로 가압 제연설비의 설계개선에 관한 연구)

  • Kim, Il-Young;Kim, Kyung-Jin;Hong, Ji-Hwan;Kwon, Chang-Hee;Yoo, Chul-Kwon
    • Fire Science and Engineering
    • /
    • v.33 no.3
    • /
    • pp.74-83
    • /
    • 2019
  • In the U.S., the pressurization of elevator shaft was developed in 1972 to allow vulnerable people, such as the elderly and weak who could not use escape stairs in case of fire, to evacuate. It is an advantage in terms of space saving by not using vertical ducts. This study drew the problem of the pressurization of elevator shaft based on the existing domestic patents and proposed improvements. The smoke control volume calculation method is proposed by using vertical modeling. Leakage gaps in elevator doors need to be reviewed through experimental data or actual data. The evacuation floor was divided, the openings in the elevator machine room were automatically closed to the fire signal and the relief damper was installed to improve the performance. The improved method functions as the smoke control damper supplying the air flow rather than maintaining the differential pressure. To increase reliability of the research results, the procedure was performed to verify by using Contam.

Prediction of Autoignition Temperatures of Gasoline-Ethanol Blended Fuels (휘발유/에탄올 혼합연료의 자연점화온도 예측)

  • Kim, Shin-Woo;Lee, Eui-Ju
    • Fire Science and Engineering
    • /
    • v.33 no.5
    • /
    • pp.1-6
    • /
    • 2019
  • The recent development of biofuel production technology facilitates the widespread use of bioethanol and biodiesel by mixing them with fossil fuels. However, the use of these new blended fuels in combustion could result in severe safety problems, such as fire and explosion. In this study, numerical simulation was performed on the well-stirred reactor (WSR) to simulate the autoignition temperature (AIT) in homogeneous combustion and clarify the effect of ethanol addition on the AIT, the most important property for assessing the potential for fire and explosion. Response surface methodology (RSM) was introduced as a design of experiment (DOE), enabling the AIT to be predicted and optimized systematically with respect to three independent variables: ethanol mole fraction, equivalence ratio, and pressure. The results show that the autoignition temperature primarily depends on the ethanol mole fraction and pressure, while the effects of the equivalence ratio are independent of the AIT. RSM accurately predicted the experimental AIT, indicating that this method can be used to effectively predict the key properties involved in fires and explosions.

A Time series Analysis on the Performance Items of the "Housing Performance Grading Indication System" (주택성능등급표시제도 성능항목의 특성 및 시계열분석( I ))

  • Lee, Sung-Ok;Kim, Soo-Am;Shin, Sung-Eun
    • Proceeding of Spring/Autumn Annual Conference of KHA
    • /
    • 2009.11a
    • /
    • pp.213-216
    • /
    • 2009
  • The purpose of this study is analyzing temporal flow about 20 detailed performance items in the "Housing Performance Grading Indication System". This study try to figure out situations according grade in detailed performance item and to analyze change item about 112 cases(2 cases in 2006, 15 cases in 2007, 46 cases in 2008, 49 cases in 2009), from January 9, 2006 which system is undertaken, to October, 2009. This system consists of 5 main performance section, 14 performance categories and 20 detailed performance items. 5 main performance parts are Noise and Acoustics(Light-weight impact sound control, heavy-weight impact sound control, sound control of toilet, sound control of party wall), Long-life(flexibility, remodeling & maintenance, durability), Landscape & Indoor Environment(landscape, formaldehyde control & ventilation, daylighting, thermal environment), Welfare & Barrier-free(playground and community center, welfare space, barrier-free design), Fire Safety(fire safety, safe place, fire-resisting quality). Total efficiency about housing can understand systematically of 20 perfomance items though this research.

  • PDF

A Study on Improvement of Flexibility for the Activation of the "Housing Performance Grading Indication System" (주택성능등급표시제도의 활성화를 위한 가변성 성능범주의 현황 및 개선방안연구)

  • Lee, Sung-Ok;Kim, Soo-Am
    • Proceeding of Spring/Autumn Annual Conference of KHA
    • /
    • 2008.11a
    • /
    • pp.479-482
    • /
    • 2008
  • The purpose of this study is a proposal about the flexibility of the performance category to revitalize the "Housing Performance Grading Indication System". This system consists of 5 main performance parts, 14 performance categories and 20 detailed performance lists. 5 main performance parts are Noise and Acoustics(Light-weight impact sound control, heavy-weight impact sound control, sound control of toilet, sound control of party wall), Long-life(flexibility, remodeling & maintenance, durability), Landscape & Indoor Environment(landscape, formaldehyde control& ventilation, daylighting, thermal environment), Welfare & Barrier-free(playground and community center, welfare space, barrier-free design), Fire Safety(fire safety, safe place, fire-resisting quality). The flexibility of the performance category is conformed to Long-life housing related grading and can realize the Long-life housing in response to resident needs about the space rearrangement. Now, The flexibility of the performance category is limited to the evaluation of the private space, that is, the Skeleton evaluation. This study would suggest alternatives to improve uppermost limits through analyzing 60 examples from January 9th 2009 to October 30th 2008. The flexibility of the performance category is possible to estimate not only the Skeleton evaluation but also the Infill evaluation in response to social changes.

  • PDF

Breakdown Properties for Insulation Design of the Environment-Friendly Pole Transformer using the Vegetable Insulating Oil (식물성절연유를 사용한 친환경 주상변압기 설계를 위한 절연파괴 특성)

  • Kwag, Dong-Soon
    • Journal of the Korean Society of Safety
    • /
    • v.26 no.6
    • /
    • pp.7-12
    • /
    • 2011
  • In recent years, environmental concerns have been raised on the use of poorly biodegradable fluids in electrical apparatus in regions where spills from leaks and equipment failure could contaminate the surroundings. The newly invented vegetable insulating oil is highly biodegradable and have negligible impact on the environment, human health and the ecosystem. For development of the environmental-friendly pole transformer using vegetable insulating oil, the dielectric constructions of the pole transformer were discussed in this paper. Depending on the dielectric constructions, the AC breakdown characteristics of the Nomex insulating papers and the vegetable insulating oil were studied by simulated electrode systems. Based on the experimental results, the maximum design stress($E_{max}$) for insulation design of the environmental-friendly pole transformer were suggested.

Design of Fire-fighting Ambulance Interior (119 구급자동차의 내부 디자인 개발에 관한 연구)

  • Shin, Dong-Min;Park, Min-Jung;Han, Yong-Taek
    • Fire Science and Engineering
    • /
    • v.30 no.1
    • /
    • pp.121-129
    • /
    • 2016
  • Ambulances are an important element of pre-hospital emergency medical services, and also an important space for improving the work efficiency of paramedics. Paramedics use the interior environment to maximize the capabilities of the space, but ambulances need to be improved to help with the responsibilities of paramedics. A Seamless space was constructed in accordance with the placement of first-aid emergency medical equipment and drugs, and a patient room was loaded in the interior space of an ambulance. This study was to improve the treatment space of an ambulance to improve the efficiency of work by paramedics The new design provides safety and efficiency for emergency medical services through planning of interior storage suitable for the duties of paramedics and through identification and analysis of the problems in the environment.

A Study on Regulation Improvement of Local Ventilation System (국소배기장치의 규제개선에 관한 연구)

  • kim, Nam Suk;Kim, Young Suk;Woo, In Sung
    • Journal of the Korean Institute of Gas
    • /
    • v.22 no.3
    • /
    • pp.74-83
    • /
    • 2018
  • Anyone who wants to install local ventilation system must obtain a permission from the Ministry of Employment and Labor even if he has permission from the Ministry of Environment. This is because not only the Atmospheric Environmental Protection Act, but also the manufacturing industry's hazardous risk prevention plan under Article 48 Clause 2 of the Industrial Safety and Health Act is to be submitted by 15 days before the construction. Under the current Environmental Protection Act, the Ministry of Environment regulates only the emission of pollutants from local exhaust ventilation systems into the atmosphere and the contents of workers' safety and health within industrial sites are managed by the Ministry of Employment and Labor. Even with the approval of the Ministry of Environment, the number of unsuccessful cases by the Ministry of Employment and Labor has increased, causing a growing discontent among the sites due to production delays and additional costs of improvement. In addition, local exhaust systems that are at greater risk of fire explosion have increased the risk of severe industrial accidents due to fire explosion. This is due to insufficient design of air volume, control speed, return speed, duct size, and risk of fire explosion. This is because the criteria and procedures for approval of local exhaust ventilation systems are similar, but the Industrial Safety and Health Act adds additional screening items for safety and safety of workers and fire and explosion. In this study, the Environment Ministry and the Employment and Labor Ministry seek to find a reasonable way to operate the system by comparing local exhaust ventilation system installation approval standards.

Proposal of the Safety Technical Standards for Incineration Process in the Chemical Plants (화학공장 소각공정에 대한 안전기술기준 제안)

  • Ma, Byung-Chol;Kwon, Hyuck-Myun;Kim, Young-Chul
    • Journal of the Korean Society of Safety
    • /
    • v.27 no.6
    • /
    • pp.64-69
    • /
    • 2012
  • The purpose of this study is to suggest new safety technical standards to improve the safety in the incineration process. Firstly, we analyzed the major accidents occurred in the incineration process since 1996 and proposed 4 articles which is required to be added newly to the existing KOSHA GUIDE. Secondly, we also performed the HAZOP study for each study node and also suggested 3 articles. Finally, we analyzed recommendations commented for PSM reports which have been submitted from the enterprise located in Honam province since 2005 and proposed 2 articles as well. We understand that all 9 articles proposed above, should be added to the KOSHA GUIDE in order to improve the safety in the incineration process and to prevent the major fire and explosion accidents in the design stage.

Experimental Studies on the Effect of Various Design Parameters on Thermal Behaviors of High Strength Concrete Columns under High Temperatures (다양한 설계변수에 따른 고강도 콘크리트 기둥의 열적 거동 분석을 위한 실험 연구)

  • Shin, Yeong-Soo;Park, Jee-Eun;Mun, Ji-Young;Kim, Hee-Sun
    • Journal of the Korea Concrete Institute
    • /
    • v.23 no.3
    • /
    • pp.377-384
    • /
    • 2011
  • Although concrete is considered as fire proof materials, high strength concrete shows severe material and structural damages when exposed to fire. To understand such damages in high strength concrete structures, the effects of various design parameters and fire condition on the thermal behaviors of high strength concrete structures are investigated in this study. In order to achieve this goal, fire tests are performed on high strength concrete columns with different fire conditions and design parameters including cross sectional area, cover thickness, and reinforcement alignment. To investigate thermal behaviors, temperature distributions and amount of spalling are measured. In overall, the columns show rapidly increasing inner temperatures between 30~60 mins of the fire tests due to spalling. In detail, the higher temperature distributions are observed from the columns with the larger cross section and less cover thickness. Moreover, among the columns with same reinforcing ratio, larger number of reinforcements with the smaller diameter causes the higher temperature distribution. The findings from the experimental study allow not only understanding of thermal behaviors of high strength concrete columns under fire, but also guidance in revising fire safety design.

Case Study on the detailed standard setting and Application for QRA in Honam high speed railway tunnel (호남고속철도터널의 정량적 위험도 분석(QRA)을 위한 세부기준수립 및 적용사례)

  • Kim, Seon-Hong;Moon, Yeon-Oh;Seok, Jin-Ho;Kim, Ki-Lim;Kim, Chan-Dong;Yoo, Ho-Sik
    • Proceedings of the Korean Society for Rock Mechanics Conference
    • /
    • 2008.10a
    • /
    • pp.249-260
    • /
    • 2008
  • Although the accident rate is lower than the road tunnel, fire in railway tunnel can bring large damage of human life. In the high speed railway tunnel, the possibility of the railway-disaster (fire) is growing in consideration of the speedy railway and the tunnel length. For that reason, MLTM (Ministry of Land, Transport and Maritime Affairs) published "Rules about the Safety Standard of Railroad (2005.10.27)" and "The Detailed Safety Standard of Railroad (2006.9.22)". According to those, QRA(Quantitative Risk Analysis) technique is recommended to be applied to railway tunnel design which is longer than 1km for assuring the safety function and estimating the risk. However, it is difficult to perform the disaster prevention design due to lack of the detailed standards about event scenario, fire intensity, incidence rate of accidents etc. Therefore, This paper introduces the case of tunnel design for disaster prevention of the Honam high speed railway including the detailed standards of QRA and reasonable safety facilities.

  • PDF