DocumentCode :
172089
Title :
Research on the lightning risk assessment method for Chongqing based on fuzzy mathematics
Author :
Yu Shuyu ; Ren Yan
Author_Institution :
Chongqing Lightning Protection Center, Chongqing, China
fYear :
2014
fDate :
11-18 Oct. 2014
Firstpage :
1054
Lastpage :
1057
Abstract :
Reasonable and scientific lightning disaster risk assessment can effectively reduce losses caused by lightning, but at present the lightning risk assessment system is not perfect, sometimes it cannot well evaluate actual lightning disaster risks. For some certain occasions, IEC62305-2 standard dose not well reflect the true lightning risk, such as large-scale residential district, a large area factory, etc. In these cases, On the basis of in-depth study on the mechanism of lightning disaster, we can analyze the lightning risk by three aspects of hazard, exposure and vulnerability of hazard bearing body. Then we select eleven lightning risk factors such as ground flash density, lightning current intensity, lightning current steepness, the number of personnel, the equivalent property, relative height, floor space, nature of use, effective spacing, etc. At last by AHP and fuzzy mathematics theory, we obtain the lightning risk assessment formula for Chongqing region. Through the lightning risk assessment method Specific assessment verification shows that this method has better applicability and can better serve lightning protection and disaster reduction in Chongqing region, it can be a good supplement for IEC62305-2 lightning risk assessment.
Keywords :
IEC standards; analytic hierarchy process; current density; disasters; emergency management; fuzzy set theory; hazards; lightning; lightning protection; risk management; AHP; Chongqing region; IEC62305-2 standard; assessment verification; disaster reduction; floor space; fuzzy mathematics theory; ground flash density; hazard bearing body; large area factory; large-scale residential district; lightning current intensity; lightning current steepness; lightning disaster mechanism; lightning protection; lightning risk assessment method; lightning risk factors; losses reduction; relative height; scientific lightning disaster risk assessment system; Lightning; fuzzy mathematic theory; lightning disaster risk assessment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Lightning Protection (ICLP), 2014 International Conference o
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/ICLP.2014.6973280
Filename :
6973280
Link To Document :
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