• Title/Summary/Keyword: 화원

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A Study on the Fire Sources Analysis Using the Optical Characteristics of Smoke Particles and Neural Networks (연기입자의 광학적 특성과 신경망을 이용한 화원분석에 대한 연구)

  • Jee, Seung-Wook
    • Fire Science and Engineering
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    • v.28 no.5
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    • pp.64-70
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    • 2014
  • The neural networks were able to be used by analyze fire source with the optical characteristics of smoke particles. The neural networks were learned the optical characteristics for three types test fire (paper, wood, flammable liquid). These test fires which were adopted in this study were also used to performance test of smoke detector according to UL268. A smoke chamber which was able to detect light extinction and scattering simultaneously was created. The optical characteristics of smoke particles were measured by the smoke chamber. And the results were used to input data for the neural networks. The neural networks distinguished the fire source accurately for paper fire, wood fire or flammable liquid fire. The neural networks distinguished accurately the combined fire source such as paper-wood fire, paper-flammable liquid fire or wood-flammable liquid fire.

Optical Properties for Smoke Particles of Fire Sources According to UL 268 (UL 268 화원에 의한 연기입자의 광학적 특성)

  • Jee, Seung-Wook;Lee, Jong-Hwa
    • Fire Science and Engineering
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    • v.28 no.2
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    • pp.9-13
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    • 2014
  • This paper is basic study for development of the photoelectric-type smoke detector that is able to distinguish fire source as well as fire detection. For this subject, Light source and sensor which is normally used for the conventional smoke detector are assembled for the optical chamber. Using 3 type of the test fires (the paper fire, the wood fire, the flammable liquid fire) this paper attempts to find optical properties of each fire. These 3 type of fire are used in the testing of smoke detector according to UL 268 standard. As the result, there are disambiguated between the paper fire and the wood fire in scattering and reason of extinction in the flammable liquid fire is different from that of the paper and the wood fire.

화원에서 발생하는 Bioaerosol 오염도 특성평가 : 화원종류, 계절 및 일중시간

  • Gang, Jung-Hwan;Jo, Wan-Geun;Kim, Mo-Geun;Lee, Ji-Hyun;Lee, Jun-Yeob;Sin, Seung-Ho;Kwon, Gi-Dong
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2005.11a
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    • pp.37-39
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    • 2005
  • total fungi 농도가 겨울철 실내${\cdot}$외 비 10배에서, 봄철 3배로 크게 감소한 이유는 겨울철 식물의 생육을 위한 화원내부 온도 및 습도가 선행 연구된 미생물 생육을 위한 환경과 유사하여 미생물의 포자 활동이 활발할 수 있고, 환기역시 봄에 비해 겨울동안 불량하여 발생한 fungi 포자가 희석되지 못했기 때문인 것으로 사료 된다. 화원의 종류별 실험결과 식물의 수가 비교적 적고 토양이 없는 절화화원과, 식물의 수가 적고 건조한 선인장화원이 bacteria 농도가 적으며, 식물의 수가 많고 양분을 공급하기위한 썩은 토양이 많은 종합식물원과 난초농장의 경우 bacteria의 수가 많음을 확인 하였다. 또한 식물의 포자 활동이 활발한 봄철에 미생물의 활동 또한 활발함을 알 수 있었다.

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A Study on the Response Characteristics of CO Sensor Depending on the Fire Types (화원종류에 따른 CO센서의 응답특성에 관한 연구)

  • Sung, Want-Ki;Kim, Si-Kuk;Jee, Seung-Wook;Kim, Hyeong-Gweon;Lee, Chun-Ha
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.11a
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    • pp.187-190
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    • 2011
  • 본 논문은 초기화재 및 훈소화재에 적응성이 있는 CO센서의 응답특성을 분석하고자 접촉식 CO센서를 실험대상으로 하여 한국소방산업기술원의 실화재시험장에서 모형화재실험을 실시하였다. 화원의 종류로는 UL 268 시험화원인 종이, 목재, 인화성액체를 화원으로하여 각 화원에 따른 CO센서의 응답특성을 비교 분석하였다.

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Characteristics of Thermal and Fluid Flows for Different Fire Locations in Underground Combined Cycle Power Plant (화원 위치에 따른 지하 복합 발전 플랜트 내 열유동 특성 연구)

  • Sung, Kun Hyuk;Bang, Joo Won;Lee, Soyeong;Ryou, Hong Sun;Lee, Seong Hyuk
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.5
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    • pp.716-722
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    • 2017
  • The present study numerically investigates the effect of obstacles located in the trajectory of fire plume flow on heat flow characteristics by using Fire Dynamics Simulation (FDS) software in an underground combined cycle power plant (CCPP). Fire size is taken as 10 MW and two different locations of fire source are selected depending on the presence of an obstacle. As the results, when the obstacle is in the trajectory of fire plume, hot plume arrives at the ceiling about 5 times slower in the upper of the fire in comparison to the results without obstacle. In addition, the average propagation time of ceiling jet increases by about 70 % with the distance from the ceiling in the upper of the fire, and it increases mainly about 4 times at the distance of 10 m. Consequently, it is noted that the analysis of heat flow characteristics in the underground CCPP considering fire scenarios is essential to develop the fire detection system for initial response on evacuation and disaster management.

Analysis of Prediction Results and Grid Size Dependence According to Changes in Fire Area (화원면적 변화에 따른 격자 크기 의존도 및 예측결과 분석)

  • Yun, Hong-Seok;Hwang, Cheol-Hong
    • Fire Science and Engineering
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    • v.33 no.6
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    • pp.9-19
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    • 2019
  • In fire simulations for building fire safety evaluation, changes in the fire area and grid size can significantly influence the prediction results. Therefore, the effects of area changes of the fire source with identical maximum heat release rates on the prediction results of a compartment fire were investigated. The dependence of the prediction results on the grid size using the identical fire area was also examined. No significant changes were observed in the thermal and chemical characteristics of the fires with variable grid sizes, even though the fire area was changed when six or more grids were set based on the fire diameter. In addition, changes in the fire area caused significant differences in the prediction of major physical quantities associated with available safety egress time (ASET) within a compartment. However, the fire area changes did not considerably influence the overall fire characteristics outside the compartment after reaching a certain distance from the opening.

Analysis on Activation Characteristic of Heat Detectors in a Compartment Fire (실내화재에서의 열감지기 동작특성 분석)

  • Ryu, Hocheol
    • Journal of the Society of Disaster Information
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    • v.10 no.4
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    • pp.598-608
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    • 2014
  • The first operation of alarm system starts at a detector. And the largest effect is produced on the operation of detector by the fire source position and installation position. Nevertheless, the Korean standard for the installation of detector only specifies matters of fire detector installation according to area and height, without consideration of installation position and fire source position. Therefore, this study carried out a fire test in consideration of detector installation position and fire source position (5 places) in order to minimize casualties owing to the fast operation of fire detector when a fire occurred. Considering that it took the longest time for a detector close to a wall to work in the results of this test, it was possible to find that a minimum clearance to the wall was required.

THE STUDY ON THE CHARACTERISTICS OF FIRE DRIVEN SMOKE-FLOW FOR DIFFERENT FIRE-LOCATION IN DEEPLY UNDERGROUND SUBWAY STATION (대심도 지하역사에서 화원 위치에 따른 연기거동 특징 연구)

  • Kim, H.B.;Jang, Y.J.;Lee, C.H.;Jung, W.S.
    • 한국전산유체공학회:학술대회논문집
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    • 2009.04a
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    • pp.202-207
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    • 2009
  • In this study, Numerical simulations were performed to analyze the characteristics of fire driven smoke flow for different location of fire source in the deeply underground subway station with using FDS code. The fire driven smoke-flow which was simulated by using Parallel Computational Method for fast calculation and LES for turbulence model. In this research, the fire location to obstruct a suitable egress from the fire disaster were discussed.

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Development of Ambient Ionization Mass Spectrometry Imaging for Live Cells and Tissues

  • Kim, Jae-Yeong;Seo, Eun-Seok;Lee, Seon-Yeong;Jeong, Gang-Won;Mun, Dae-Won
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.229.1-229.1
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    • 2015
  • 생체 시료인 세포나 조직을 분석을 위해 임의로 파괴하거나 훼손하지 않은 본래의 상태에서 세포에 존재하는 다양한 생체분자 물질의 질량과 조성을 분석하고 영상화할 수 있는 대기압 표면 질량분석 이미징 기술을 개발했다. 생체 시료의 표면을 질량 분석을 하기 위해서는 대기압 분위기에서 시료에 열적 손상이 없는 조건으로 시편의 이온화 및 탈착 과정이 이루어지게 하기 위해 저온 대기압 탈착/이온화원으로 저온대기압 플라즈마 젯과 펨토초 적외선 레이저를 결합하여 대기압 이온화원을 제작하였다. 기존에 잘 알려진 저온 대기압 플라즈마 젯 소자는 유리관에 방전기체를 흘려주고 전극에 고전압을 인가하는 방식으로 제작했으며, 또 다른 대기압 이온화원으로서 근적외선 대역의 고출력 펨토초 레이저 빔을 현미경용 대물렌즈로 집속하여 생체시료에 조사시켰다. 수백 나노미터에서 수 마이크로미터 수준으로 빔을 집속할 수 있는 펨토초 레이저는 금나노로드의 도움으로 생체 시료를 매우 작은 수준으로 탈착하는 데 주로 사용하며, 수십 마이크로미터에서 수 밀리미터 정도의 크기를 가지는 저온 대기압 플라즈마 젯은 탈착된 물질을 이온화시키는데 사용하여, 이 두 가지 이온화원을 결합하여 이온화원으로 사용한다. 시료에서 발생한 이온을 질량분석기 입구까지 잘 끌고 갈 수 있도록 이온 전달관을 설계하고 보조펌프를 장착 사용한다. 이렇게 자체 개발한 대기압 이온화원을 상용 질량분석기기와 결합하여 대기압 분위기에서 시료의 표면을 질량분석할 수 있는 시스템과 측정 기술을 개발했다. 현미경 스테이지에 정밀 2-D 자동 스캐닝 스테이지를 장착하여 질량분석 정보에 공간 정보를 더할 수 있는 질량분석 이미징 기술 방법을 개발하여 생체 시편의 질량분석 이미징을 얻었다. 수분을 포함하는 생채시료로부터 단백질, 지질, 대사물질을 직접 분리하여 분석하는 이 새로운 질량분석법은 기존의 분석법에 비해 훨씬 더 많은 생체분자 정보를 얻을 수 있으며 공간정보를 더해 영상화할 수 있는 큰 장점이 있다. 대기압 표면 질량분석 기술은 생체시료를 파괴해서 용액화할 필요도 없으며, 진공 챔버에 넣기 위해 필요한 복잡한 전처리 과정 단계를 간략화 할 수 있으며 최종적으로는 살아있는 세포나 생체 조직도 정량 분석이 가능하여 생명과학 및 의료진단 분야에서 응용할 수 있는 분야는 무궁무진할 것이다.

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A Study on the Behaviour of Smoke Spread Caused by Vehicle Fire in a Road Tunnel (터널 내 차량 화재에 따른 연기 확산 거동에 관한 연구)

  • Yoon, Yong-Kyun;Ju, Eun-Hye
    • Tunnel and Underground Space
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    • v.22 no.5
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    • pp.365-372
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    • 2012
  • This paper aims to evaluate the effects that presence, installation number and capacity of ventilation vent and presence of multiple fire sources have on the behaviour of smoke temperature induced by vehicle fire in road tunnel. Six types of scenarios were assumed and FDS was ran to simulate them. As the number of ventilation vents increases, the smoke temperature are calculated to be reduced, but it is shown that effects exerted by two ventilation vents are almost similar to ones by three ventilation vents. Capacity of ventilation vent has a greater impact on the reduction of smoke temperature than installation number of ventilation vents. Smoke temperatures computed for all scenarios except for scenario No. 1 (without ventilation vent) and scenario No. 6 (with multiple fire sources) above fire source are analyzed to be under $400^{\circ}C$ and it means that the radiation of smoke layer above fire source doesn't induce the ignition of materials around fire source.