复杂网络分析事故原因建模,提高化工企业过程安全

IF 1.9 4区 工程技术 Q3 ENGINEERING, CHEMICAL Canadian Journal of Chemical Engineering Pub Date : 2024-09-16 DOI:10.1002/cjce.25443
Songming Li, Guohua Chen, Lixing Zhou, Yimeng Zhao, Qiming Xu, Jie Zhao
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引用次数: 0

摘要

危险化学品经常引起灾难性事故,事故往往是多种原因复杂相互作用的结果。由于化工企业不同区域的风险因素不同,为了实现更精准的预防,需要对每个区域的事故风险因素进行更详细的研究。因此,本研究着重于利用复杂网络模型分析化工企业不同功能区域的关键事故原因及其相互关系,以提高过程安全。基于90条事故信息,构建了危险化学品仓库区(HCWAs)、油库区(tfa)和生产区(PAs)的复杂网络模型。随后,对复杂网络模型进行了拓扑分析。基于PageRank算法,hcwa识别出13个关键节点,tfa识别出14个关键节点,pa识别出13个关键节点。带置信度的节点度分析量化了相互影响,形成了每个区域的关键事故因果联系。研究结果为化工企业事故风险的精准控制提供决策支持,有助于减少未来事故的发生,提高化工企业过程系统的安全性。
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Complex network analysis for accident causes modelling to enhance process safety in chemical enterprises

Hazardous chemicals often cause catastrophic accidents, and accidents often result from intricate interactions among various causes. Due to the varying risk factors in different areas of chemical enterprises, to achieve more precise prevention, a more detailed study of the accident risk factors in each area is necessary. Therefore, this study focuses on analyzing critical accident causes and their interrelationships in different functional areas of chemical enterprises to enhance process safety by using a complex network model. Based on 90 accident information, complex network models are constructed for hazardous chemical warehouse areas (HCWAs), tank farm areas (TFAs), and production areas (PAs). Subsequently, a topological analysis of the complex network models is conducted. Based on the PageRank algorithm, 13 critical nodes are identified for HCWAs, while 14 for TFAs and 13 for PAs. Node degree analysis with confidence quantifies mutual influences, forming critical accident causal links for each area. The research results offer decision support for precise accident risk control, aiding in reducing future accidents and improving process system safety in chemical enterprises.

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来源期刊
Canadian Journal of Chemical Engineering
Canadian Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
3.60
自引率
14.30%
发文量
448
审稿时长
3.2 months
期刊介绍: The Canadian Journal of Chemical Engineering (CJChE) publishes original research articles, new theoretical interpretation or experimental findings and critical reviews in the science or industrial practice of chemical and biochemical processes. Preference is given to papers having a clearly indicated scope and applicability in any of the following areas: Fluid mechanics, heat and mass transfer, multiphase flows, separations processes, thermodynamics, process systems engineering, reactors and reaction kinetics, catalysis, interfacial phenomena, electrochemical phenomena, bioengineering, minerals processing and natural products and environmental and energy engineering. Papers that merely describe or present a conventional or routine analysis of existing processes will not be considered.
期刊最新文献
Issue Information Computational intelligence for empirical modelling and optimization of methylene blue adsorption phenomena utilizing an activated carbon-supported [Co(NH3)6]Cl3 complex
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