Fuzzy synthetic assessment of building fire safety system

Gao-shang Yang , Li-min Peng

Journal of Central South University ›› 2005, Vol. 12 ›› Issue (Suppl 1) : 194 -198.

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Journal of Central South University ›› 2005, Vol. 12 ›› Issue (Suppl 1) : 194 -198. DOI: 10.1007/s11771-005-0398-x
Geology, Mining And Civil Engineering

Fuzzy synthetic assessment of building fire safety system

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Abstract

A multistage assessment index set is chosen based on the analysis of building fire safety system, whereby the weight of each index is determined through an analytic hierarchy process; a fuzzy synthetic assessment model for the building fire safety system is constructed, and the quantified result was obtained by using hierarchy parameter judgment. This fuzzy synthetic assessment method can quantify assessment result of the building fire safety system, so that the fire precautions may be accurately adopted, and the serious potential risk may be avoided. The application shows that this method possesses both objectivity and feasibility.

Keywords

building fire safety system / assessment index set / fuzzy synthetic assessment / hierarchy parameter judgment

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Gao-shang Yang, Li-min Peng. Fuzzy synthetic assessment of building fire safety system. Journal of Central South University, 2005, 12(Suppl 1): 194-198 DOI:10.1007/s11771-005-0398-x

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References

[1]

WANG Xu, GAO Yong-ting. Study on countermeasures of fire accidents for buildings [J]. China Safety Science Journal, 1999(5): 18–21. (in Chinese)

[2]

FAN Wei-cheng, LIU Nai-an. Fire safety science—A promising and interdisciplinary engineering scientific field [J]. Engineering Science, 2001(1): 6–15.

[3]

ZhangYong-sheng. Building fire and prevention [J]. Safety, 2000, 21(2): 12-15

[4]

LI Zhi-xian, ZHOU Xin-quan, YANG Man-hong. Preliminary probe into the risk assessment of building fire [J]. China Safety Science Journal, 2002(4): 30–34.

[5]

SIU Ming Lo. A fire safety assessment system for existing buildings [J]. Fire Technology, 1999, 35(2).

[6]

ZHENG Shuang-zhong, GAO Yong-ting, CHENG Bao-zhi. Studies on fire disaster assessment index system and its weight of urban building [J]. Industrial Safety and Environmental, 2001(11): 37–40.

[7]

LI Yin-qing, JI Guang-qi, XIAO Ze-nan. Estimation of fire damage to buildings and their prevention safety levels [J]. Architecture Science, 1998(6): 9–15.

[8]

Davis D T. Risk assessment [J]. Fire Engineers, 1997 (3): 12–17.

[9]

HuoRan, HuYuan, LiYuan-zhouSafety Engineering Introduction [M], 1999, Beijing, University of Science and Technology Beijing: 131-135

[10]

ZhangJi-jun. Fuzzy analytic hierarchy process [J]. Fuzzy System and Math, 2000, 14(2): 80-88

[11]

WangYin-luoSystem Engineering Theory, Method and Application [M], 1993, Beijing, China Higher Education Press: 236-244

[12]

YiLi-xin, WuLi-zhi. Math model of urban fire risk assessment [J]. China Safety Science Journal, 2000, 10(4): 36-39

[13]

WangCai, SongBian-tianFuzzy Method [M], 1998, Beijing, China Building Industry Press: 13-53

[14]

DuHong-bing, ZhouXin-quan, ZhangJin-zong. Fuzzy synthetic evaluation for fire safety of high-rise buildings [J]. Journal of China University of Mining & Technology, 2002, 5: 241-245

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