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A chemical accident cause text mining method based on improved accident triangle
by
Li, Zheng
, Su, Chang
, Liu, Tongshuang
, Wang, Xinping
, Huang, Qianrui
, Yao, Min
, Luo, Zhenmin
in
Accident classification
/ Accident investigations
/ Accident prevention
/ Accident triangle
/ Accidents
/ Algorithms
/ Artificial intelligence
/ Biostatistics
/ Casualties
/ Chemical Hazard Release
/ Chemical industry
/ Chemicals
/ Classification
/ Cluster analysis
/ Clustering
/ Coal mining
/ Computational linguistics
/ Construction accidents & safety
/ Correlation coefficient
/ Correlation coefficients
/ Data analysis
/ Data mining
/ Environmental Health
/ Environmental Pollution
/ Epidemiology
/ Fatalities
/ Herbicides
/ Humans
/ Industrial development
/ Injuries
/ Innovations
/ K-means algorithms
/ Language processing
/ Medicine
/ Medicine & Public Health
/ Methods
/ Mine accidents
/ Mining accidents & safety
/ Natural language interfaces
/ Occupational health
/ Pesticides industry
/ Prevention
/ Process parameters
/ Property damage
/ Public Health
/ Risk Factors
/ Safety
/ Safety and security measures
/ Safety Management
/ Statistical analysis
/ Text mining
/ Traffic accidents & safety
/ Vaccine
/ Workplace accidents
2024
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A chemical accident cause text mining method based on improved accident triangle
by
Li, Zheng
, Su, Chang
, Liu, Tongshuang
, Wang, Xinping
, Huang, Qianrui
, Yao, Min
, Luo, Zhenmin
in
Accident classification
/ Accident investigations
/ Accident prevention
/ Accident triangle
/ Accidents
/ Algorithms
/ Artificial intelligence
/ Biostatistics
/ Casualties
/ Chemical Hazard Release
/ Chemical industry
/ Chemicals
/ Classification
/ Cluster analysis
/ Clustering
/ Coal mining
/ Computational linguistics
/ Construction accidents & safety
/ Correlation coefficient
/ Correlation coefficients
/ Data analysis
/ Data mining
/ Environmental Health
/ Environmental Pollution
/ Epidemiology
/ Fatalities
/ Herbicides
/ Humans
/ Industrial development
/ Injuries
/ Innovations
/ K-means algorithms
/ Language processing
/ Medicine
/ Medicine & Public Health
/ Methods
/ Mine accidents
/ Mining accidents & safety
/ Natural language interfaces
/ Occupational health
/ Pesticides industry
/ Prevention
/ Process parameters
/ Property damage
/ Public Health
/ Risk Factors
/ Safety
/ Safety and security measures
/ Safety Management
/ Statistical analysis
/ Text mining
/ Traffic accidents & safety
/ Vaccine
/ Workplace accidents
2024
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A chemical accident cause text mining method based on improved accident triangle
by
Li, Zheng
, Su, Chang
, Liu, Tongshuang
, Wang, Xinping
, Huang, Qianrui
, Yao, Min
, Luo, Zhenmin
in
Accident classification
/ Accident investigations
/ Accident prevention
/ Accident triangle
/ Accidents
/ Algorithms
/ Artificial intelligence
/ Biostatistics
/ Casualties
/ Chemical Hazard Release
/ Chemical industry
/ Chemicals
/ Classification
/ Cluster analysis
/ Clustering
/ Coal mining
/ Computational linguistics
/ Construction accidents & safety
/ Correlation coefficient
/ Correlation coefficients
/ Data analysis
/ Data mining
/ Environmental Health
/ Environmental Pollution
/ Epidemiology
/ Fatalities
/ Herbicides
/ Humans
/ Industrial development
/ Injuries
/ Innovations
/ K-means algorithms
/ Language processing
/ Medicine
/ Medicine & Public Health
/ Methods
/ Mine accidents
/ Mining accidents & safety
/ Natural language interfaces
/ Occupational health
/ Pesticides industry
/ Prevention
/ Process parameters
/ Property damage
/ Public Health
/ Risk Factors
/ Safety
/ Safety and security measures
/ Safety Management
/ Statistical analysis
/ Text mining
/ Traffic accidents & safety
/ Vaccine
/ Workplace accidents
2024
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A chemical accident cause text mining method based on improved accident triangle
Journal Article
A chemical accident cause text mining method based on improved accident triangle
2024
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Overview
Background
With the rapid development of China’s chemical industry, although researchers have developed many methods in the field of chemical safety, the situation of chemical safety in China is still not optimistic. How to prevent accidents has always been the focus of scholars’ attention.
Methods
Based on the characteristics of chemical enterprises and the Heinrich accident triangle, this paper developed the organizational-level accident triangle, which divides accidents into group-level, unit-level, and workshop-level accidents. Based on 484 accident records of a large chemical enterprise in China, the Spearman correlation coefficient was used to analyze the rationality of accident classification and the occurrence rules of accidents at different levels. In addition, this paper used TF-IDF and K-means algorithms to extract keywords and perform text clustering analysis for accidents at different levels based on accident classification. The risk factors of each accident cluster were further analyzed, and improvement measures were proposed for the sample enterprises.
Results
The results show that reducing unit-level accidents can prevent group-level accidents. The accidents of the sample enterprises are mainly personal injury accidents, production accidents, environmental pollution accidents, and quality accidents. The leading causes of personal injury accidents are employees’ unsafe behaviors, such as poor safety awareness, non-standard operation, illegal operation, untimely communication, etc. The leading causes of production accidents, environmental pollution accidents, and quality accidents include the unsafe state of materials, such as equipment damage, pipeline leakage, short-circuiting, excessive fluctuation of process parameters, etc.
Conclusion
Compared with the traditional accident classification method, the accident triangle proposed in this paper based on the organizational level dramatically reduces the differences between accidents, helps enterprises quickly identify risk factors, and prevents accidents. This method can effectively prevent accidents and provide helpful guidance for the safety management of chemical enterprises.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
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