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    대규모 화재에 의한 풍환경의 변화 = Change of Wind Environment by Large Scale Fire

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    https://www.riss.kr/link?id=A75085887

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The purpose of this study is to develop a real time prediction method for a large-scale urban fire. Such large-scale urban fire is well known as the secondary disaster which follows a devastating earthquake. The real time prediction of fire can help smooth evacuation of residents from dangerous parts of a disaster area. In this study, CFD method is applied to simulate fire plume and its surrounding wind field. Great earthquakes are often followed by large-scale urban fire disasters. The famous examples are the Kanto Earthquake(Tokyo:1923) and the Hanshin-Awaji Earthquake (Kobe:1995) in Japan. From the viewpoint of social safety control, it is quite important to develop a predicting and planning method to minimize the secondary disaster. The method should be equipped with the properties of real time simulation. So it can predict fire phenomena in real time manner to support residents for evacuating and to help fire fighters for extinguishing conflagration. In this study, 3D CFD analysis of wind and temperature fields over Kobe city which experienced a large-scale fire just after the Hanshin-Awaji (Kobe) Earthquake is implemented with the aid of a meso-scale climate model. The field data measured on the date, when earthquake occurred, are used for the boundary and initial conditions of this study to simulate the large-scale fire plume over Kobe city. This numerical analysis deals with the large-scale wind field. The effects of strong heat radiation, fire bands on combustion, and fire spreading are not considered for the study. In the simulation, the thermal plume and the surrounding wind converging to the center of fire are predicted. In the future, the fire bands and radiation models will be investigated to develop a fire simulation code.
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    The purpose of this study is to develop a real time prediction method for a large-scale urban fire. Such large-scale urban fire is well known as the secondary disaster which follows a devastating earthquake. The real time prediction of fire can help s...

    The purpose of this study is to develop a real time prediction method for a large-scale urban fire. Such large-scale urban fire is well known as the secondary disaster which follows a devastating earthquake. The real time prediction of fire can help smooth evacuation of residents from dangerous parts of a disaster area. In this study, CFD method is applied to simulate fire plume and its surrounding wind field. Great earthquakes are often followed by large-scale urban fire disasters. The famous examples are the Kanto Earthquake(Tokyo:1923) and the Hanshin-Awaji Earthquake (Kobe:1995) in Japan. From the viewpoint of social safety control, it is quite important to develop a predicting and planning method to minimize the secondary disaster. The method should be equipped with the properties of real time simulation. So it can predict fire phenomena in real time manner to support residents for evacuating and to help fire fighters for extinguishing conflagration. In this study, 3D CFD analysis of wind and temperature fields over Kobe city which experienced a large-scale fire just after the Hanshin-Awaji (Kobe) Earthquake is implemented with the aid of a meso-scale climate model. The field data measured on the date, when earthquake occurred, are used for the boundary and initial conditions of this study to simulate the large-scale fire plume over Kobe city. This numerical analysis deals with the large-scale wind field. The effects of strong heat radiation, fire bands on combustion, and fire spreading are not considered for the study. In the simulation, the thermal plume and the surrounding wind converging to the center of fire are predicted. In the future, the fire bands and radiation models will be investigated to develop a fire simulation code.

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    목차 (Table of Contents)

    • Abstract
    • 1. 서론
    • 2. 난류모델
    • 3. 해석개요
    • 4. 해석결과 및 고찰
    • Abstract
    • 1. 서론
    • 2. 난류모델
    • 3. 해석개요
    • 4. 해석결과 및 고찰
    • 5. 결론
    • 참고문헌
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    참고문헌 (Reference)

    1 김상진, "수치 모델을 이용한 해풍의 진입과 기온과의 관계에 대한 해석" 한국풍공학회 7 (7): 107-114, 2003

    2 김상진, "도시발전에 따른 국지기후의 변화" 대한건축학회 19 (19): 175-182, 2003

    3 加藤信介ら, "震災ビル火災時の周辺熱気流性状のCDF解析"

    4 村上周三, "都市氣候モデルによる關東地方の流れ場․溫度場の數値解析" 48 (48): 33-39, 1996

    5 尾島俊雄, "東京首都圈におけるヒートアイランドの形成に關する數値解析 -首都圈の擴大が及ぼす影響に關する檢討-" 49 (49): 27-32, 1997

    6 金相璡, "數値氣候モデルによる關東地方の局地氣象の解析-初期溫位分布, 海水面溫度, 地中の熱容量及び人工排熱量の影響の檢討-" 50 (50): 86-93, 1998

    7 村上周三, "數値氣候モデルによる新潟地方の局地氣象解析 -水田の有無が夏季の環境に及ぼす影響-," 49 (49): 53-56, 1997

    8 佐賀武司, "強風下の市街地火災における火災気流に関する基礎的研究" 46 (46): 1997

    9 横井鎮男, "建築研究報告, No.34" 1960

    10 保野健治郎ら, "平常時および地震時火災の延焼速度式に関する基礎的研究" 46 (46): 1997

    1 김상진, "수치 모델을 이용한 해풍의 진입과 기온과의 관계에 대한 해석" 한국풍공학회 7 (7): 107-114, 2003

    2 김상진, "도시발전에 따른 국지기후의 변화" 대한건축학회 19 (19): 175-182, 2003

    3 加藤信介ら, "震災ビル火災時の周辺熱気流性状のCDF解析"

    4 村上周三, "都市氣候モデルによる關東地方の流れ場․溫度場の數値解析" 48 (48): 33-39, 1996

    5 尾島俊雄, "東京首都圈におけるヒートアイランドの形成に關する數値解析 -首都圈の擴大が及ぼす影響に關する檢討-" 49 (49): 27-32, 1997

    6 金相璡, "數値氣候モデルによる關東地方の局地氣象の解析-初期溫位分布, 海水面溫度, 地中の熱容量及び人工排熱量の影響の檢討-" 50 (50): 86-93, 1998

    7 村上周三, "數値氣候モデルによる新潟地方の局地氣象解析 -水田の有無が夏季の環境に及ぼす影響-," 49 (49): 53-56, 1997

    8 佐賀武司, "強風下の市街地火災における火災気流に関する基礎的研究" 46 (46): 1997

    9 横井鎮男, "建築研究報告, No.34" 1960

    10 保野健治郎ら, "平常時および地震時火災の延焼速度式に関する基礎的研究" 46 (46): 1997

    11 自治省消防庁消防研究所, "兵庫県南部地震における神戸市内の市街地火災調査報告" 1995

    12 Kondo. J., "Studies on the Bulk Transfer Coefficients over a Vegetated Surface with a Multilayer Energy Budget Model" 49 : 2183-2199, 1992

    13 김상진, "Mellor-Yamada 모델을 이용한 도시기후의 수치해석" 대한건축학회 18 (18): 251-258, 2002

    14 Shuzo Murakami, "Influence of Land-use Conditions on Velocity and Temperature Fields over Kanto Plane : Mathematical Models for Urban Climate based on Turbulence Model proposed by Mellor-Yamada" 1997

    15 G L. Mellor, "Development of a Turbulence Closure Model for Geophysical Fluid Problem" 20 (20): 851-875, 1982

    16 Tetsuji Yamada, "Development of a Nested Grid, Second Moment Turbulence Closure Model and Application to the 1982 ASCOT Brush Creek Data Simulation" 27 (27): 1982

    17 T. Yamada, "A Numerical Model Study of Nocturnal Drainage Flows with Strong Wind and Temperature Gradients" 28 : 545-554, 1989

    18 Mellor,G.L, "A Hierarchy of Turbulence Closure Models for Planetary Boundary layer" 13 (13): 1974

    19 G L. Mellor, "A Hierarchy of Turbulence Closure Models for Planetary Boundary Layer" 13 (13): 1971-1806, 1974

    20 日本火災学会, "1995年兵庫県南部地震における火災に関する調査報告書" 1996

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2022 평가 계속평가 신청대상 (등재유지)
    2017-01-01 등재 우수등재학술지 선정 (계속평가)
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2011-03-25 학술지명변경 한글명 : 대한건축학회논문집 -> 대한건축학회논문집 계획계
    외국어명 : Journal of the Architectural Institute of Korea -> Journal of the Architectural Institute of Korea Planning & Design
    KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-08-02 학술지명변경 외국어명 : Journal of the Architectural Institute of Korea, Structure&Construction -> Journal of the Architectural Institute of Korea KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2005-10-14 학술지명변경 한글명 : 대한건축학회논문집 구조계 -> 대한건축학회논문집 KCI등재
    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.38 0.38 0.38
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.41 0.4 0.742 0.11
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