|Table of Contents|

Parameters Randomness of Parametric Model of Fully-Developed Compartment Fire(PDF)

《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]

Issue:
2006年04期
Page:
44-
Research Field:
Publishing date:
2006-12-20

Info

Title:
Parameters Randomness of Parametric Model of Fully-Developed Compartment Fire
Author(s):
JIN Fei1 LI Guo-qiang12
1. School of Civil Engineering, Tongji University, Shanghai 200092, China; 2. State Key Laboratory forDisaster Reduction in Civil Engineering, Tongji University, Shanghai 200092, China
Keywords:
fire parametric model fire load density ventilation factor thermal absorptivity probability distribution
PACS:
TU205
DOI:
-
Abstract:
Authors analyzed the randomness of the parameters by reviewing the research field of parametric models of fully-developed compartment fire and conducting statistical calculation of data from fire load surveys of some foreign countries. The probability distribution models of fire load density, ventilation factor and thermal absorptivity of wall were established. The mean values and coefficients of variation of fire load density of different occupancies, as well as the probability density function of the parameter of the ventilation factor model and the ranges of thermal absorptivities of different types of walls were presented.It is shown that fire load density follows normal distribution and the parameter of the ventilation factor model follows log normal distribution. Thermal absorptivity of wall can be modeled as a variable that follows uniform distribution.

References:

[1] 李国强,吴 波,韩林海.钢结构抗火研究进展与趋势[J].建筑钢结构进展,2006,8(1):1-13.LI Guo-qiang,WU Bo,HAN Lin-hai.Development of the Research on Fire-Resistance of Steel Structures[J].Progress in Steel Building Structures,2006,8(1):1-13.
[2]霍小平,葛翠玉.建筑室内热环境测试与分析[J].建筑科学与工程学报,2005,22(2):75-81.HUO Xiao-ping,GE Cui-yu.Analysis and Test of Thermal Environment Data in Buildings[J].Journal of Architecture and Civil Engineering,2005,22(2):75-81.
[3]余志武,唐国庆,丁发兴.三面受火钢筋混凝土梁温度场非线性分析[J].建筑科学与工程学报,2005,22(4):11-14.YU Zhi-wu,TANG Guo-qing,DING Fa-xing.Nonlinear Analysis of Temperature Field of Reinforced Concrete Beam with Three Surfaces Exposing to Fire[J].Journal of Architecture and Civil Engineering,2005,22(4):11-14.
[4]宋晓勇,邹银生,涂文戈,等.受火钢筋混凝土柱截面极限承载力研究[J].建筑科学与工程学报,2005,22(4):61-64.SONG Xiao-yong,ZOU Yin-sheng,TU Wen-ge,et al.Research on Ultimate Load Capacity of Cross Section of Reinforced Concrete Columns Exposing to Fire[J].Journal of Architecture and Civil Engineering,2005,22(4):61-64.
[5]李国强,蒋首超,林贵祥.钢结构抗火计算与设计[M].北京:中国建筑工业出版社,1999.LI Guo-qiang,JIANG Shou-chao,LIN Gui-xiang.Fire Resistance Analysis and Design of Steel Structures[M].Beijing:China Architecture & Building Press,1999.
[6]NOTARIANNI K A.The Role of Uncertainty in Improving Fire Protection Regulation[D].Pittsburgh:Carnegie Mellon University,2000.
[7]DINENNO P.SPFE Handbook of Fire Protection Engineering[M].Quincy:National Fire Protection Association,1988:134-147.
[8]LIE T T.ASCE Manuals and Reports on Engineering Practice No.78,Structural Fire Protection[M].New York:American Society of Civil Engineers,1992.
[9]马忠诚.火灾下钢筋混凝土结构损伤评估与抗震修复[D].哈尔滨:哈尔滨建筑大学,1997.MA Zhong-cheng.Damage Evaluation and Aseismic Repair of RC Structures After Fire[D].Harbin:Harbin University of Civil Engineering and Architecture,1997.
[10]EN 1991-1-2:2002,Basis of Design and Actions on Structures-Actions on Structures Exposed to Fire[S].
[11]HARMATHY T Z.Fire Safety Design and Concrete[M].London:Longman Scientific & Technical,1993:210-211.
[12]CIB W14,Design Guide/Structural Fire Safety Journal[S].
[13]JCSS-VROU-12-03-97,Probabilistic Model Code Part 2-Load Models[S].
[14]SUNIL V S,KAMESWARA R.Fire Loads in Office Buildings[J].Journal of Structural Engineering,1997,123(3):365-368.
[15]刘敬中,颜 敏.加气混凝土的性能与工程应用[J].山东建材,2005,26(2):46-48.LIU Jing-zhong,YAN Min.Properties and Application of Aerated Concrete[J].Shandong Building Materials,2005,26(2):46-48.
[16]MICHELE D,FRANCESCA M,PAOLO P,et al.Thermal Conductivity of Clay Bricks[J].Journal of Materials in Civil Engineering,2004,16(1):8-14.
[17]段 军,丁建彤,郭玉顺.1 000~1 400级轻骨料混凝土的密度与强度及保温性能的关系[J].墙材革新与建筑节能,2005,10(11):44-47.DUAN Jun,DING Jian-tong,GUO Yu-shun.The Relation Between Density,Strength and Heat Insulation Property of 1 000~1 400 Light Weight Aggregate Concrete[J].Wall Materials Innovation & Energy Saving in Buildings,2005,10(11):44-47.

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Last Update: 2006-12-20