|本期目录/Table of Contents|

[1]张晓蕾,赵开功,李长明,等.基于GIS的煤制油可燃气泄漏事故分析与应急处置*[J].中国安全生产科学技术,2024,20(5):138-145.[doi:10.11731/j.issn.1673-193x.2024.05.019]
 ZHANG Xiaolei,ZHAO Kaigong,LI Changming,et al.Analysis and emergency disposal of coal-to-liquids combustible gas leakage accident based on GIS[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2024,20(5):138-145.[doi:10.11731/j.issn.1673-193x.2024.05.019]
点击复制

基于GIS的煤制油可燃气泄漏事故分析与应急处置*
分享到:

《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
20
期数:
2024年5期
页码:
138-145
栏目:
职业安全卫生管理与技术
出版日期:
2024-05-31

文章信息/Info

Title:
Analysis and emergency disposal of coal-to-liquids combustible gas leakage accident based on GIS
文章编号:
1673-193X(2024)-05-0138-08
作者:
张晓蕾赵开功李长明高进东王睿迪张洁
(1.中国矿业大学(北京) 应急管理与安全工程学院,北京 100083;
2.中国安全生产科学研究院,北京 100012;
3.北京科技大学 土木与资源工程学院,北京 100083;
4.国能数智科技发展(北京)有限公司,北京 100011)
Author(s):
ZHANG Xiaolei ZHAO Kaigong LI Changming GAO Jindong WANG Ruidi ZHANG Jie
(1.School of Emergency Management and Safety Engineering,China University of Mining and Technology-Beijing,Beijing 100083,China;
2.China Academy of Safety Science and Technology,Beijing 100012,China;
3.School of Civil and Resource Engineering,Beijing University of Science and Technology,Beijing 100083,China;
4.CHN Energy Digital Inteltech,Beijing 100011,China)
关键词:
煤制油可燃气泄漏模拟时态GIS最优方案应急指挥辅助参考
Keywords:
simulation of combustible gas leakage in coal to liquids temporal GIS optimal scheme emergency command auxiliary reference
分类号:
X937
DOI:
10.11731/j.issn.1673-193x.2024.05.019
文献标志码:
A
摘要:
为在煤制油生产过程中对化学品泄漏实施有效预警监测,并在事故发生后迅速开展先期处置和事故救援,基于煤制油泄漏研究背景,阐明煤制油可燃气体泄漏事故发生的可能原因和演化机理,将煤制油可燃气泄漏模型与地理信息系统(GIS)相结合,探索可燃气泄漏扩散模型在煤制油可燃气事故救援应急处置中的应用模式。以煤制油可燃气泄漏为例进行模拟分析,初步验证GIS集成下的煤制油可燃气泄漏事故救援应急系统的可靠性和有效性。研究结果表明:在GIS下由煤制油可燃气泄漏扩散模型分析得出的事故波及影响区域范围、应急物资调运时间最短和应急队伍响应路径最优的模拟方案,可为安全生产应急资源调配的基础数据和应急指挥科学决策提供参考,亦可为城市安全综合救援和区域协同救援提供1种可行的借鉴方法。
Abstract:
In order to implement the effective early-warning and monitoring of chemical leakage in the coal-to-liquids production process,and quickly carry out the early disposal and accident rescue after the accident,based on the research background of coal-to-liquids leakage,the possible causes and evolution mechanism of coal-to-liquids combustible gas leakage accident were illustrated.The model of coal-to-liquids combustible gas leakage was combined with the geographic information system (GIS) system,and the application mode of combustible gas leakage and diffusion model in the emergency response to the coal-to-liquids combustible gas accident was explored.In addition,the simulation analysis was conducted using the coal-to-liquids combustible gas leakage accident as an example,and the feasibility and effectiveness of the emergency rescue system for the coal-to-liquids combustible gas leakage accident under GIS integration were preliminarily verified.The results show that the simulation scheme obtained by the coal-to-liquids combustible gas leakage and diffusion model under GIS system can achieve the affected area of the accident,the shortest time of emergency materials transportation,and the optimal response path of emergency teams.It can provide reference for the basic data of work safety emergency resource allocation and scientific decision-making of emergency command,and also provide a feasible reference method for urban safety comprehensive rescue and regional collaborative rescue.

参考文献/References:

[1]中华人民共和国应急管理部.国务院安委办召开视频会部署推进危化品安全风险隐患专项排查治理发现问题整改[EB/OL].(2020-12-17)[2023-07-17].https://www.mem.gov.cn/xw/bndt/202012/t20201217_375397.shtml.
[2]央视网.应急管理部启动危化品重大危险源企业专项督导核查[EB/OL].(2021-06-15)[2023-06-15].https://news.cctv.com/2021/06/15/ARTIDJRR3ynGTdEDNlPiJcrd210615.shtml.
[3]张晓蕾,张洁.化工厂天然气管道泄漏火灾研究[J].能源化工,2021,42(1):66-71. ZHANG Xiaolei,ZHANG Jie.Study on fire accident caused by the leakage of the natural gas pipeline [J].Energy Chemical Industry,2021,42(1):66-71.
[4]张晓蕾.2014—2016年我国化学品事故统计分析研究[J].石化技术,2018,25(12):13-15. ZHANG Xiaolei.Statistical analysis of chemical accidents in China from 2014 to 2016 [J].Petrochemical Technology,2018,25(12):13-15.
[5]李雷雷,朱红青,丁晓文,等.危化品事故应急救援能力提升方法研究——基于天津港“8·12”瑞海公司危险品仓库特别重大火灾爆炸事故教训[J].中国安全生产科学技术,2020,16(11):71-76. LI Leilei,ZHU Hongqing,DING Xiaowen,et al.Method for improving emergency rescue capability for hazardous chemicals accidents:lessons of Tianjin Port“8.12”especially serious fire and explosion accident in Ruihai Company hazardous goods store[J].Journal of Safety Science and Technology,2020,16(11):71-76.
[6]苏玲玲.煤制油煤粉泄漏扩散防治技术要点探讨[J].山西化工,2021,41(5):94-96. SU Lingling.Discussion on prevention and control technology of leakage and diffusion of coal to liquid and pulverized coal[J].Shanxi Chemical Industry,2021,41(5):94-96.
[7]赵开功,张晓蕾,李长明,等.典型可燃气体小孔泄漏危险范围预测模型研究[J].煤炭科学技术,2023,51(3):281-290. ZHAO Kaigong,ZHANG Xiaolei,LI Changming,et al.Numerical simulation on prediction model of risk range of typical gas release through small holes[J].Coal Science and Technology,2023,51(3):281-290.
[8]ZHAO K G,WANG H Y,ZHENG D F.Research on structural similarity design emergency exercise’s scenario[J].Geofludis,2022,37(9):2256-2267.
[9]黄鑫,秘义行,陈彦菲,等.煤制油工程中煤粉制备系统的火灾危险性分析[J].消防科学与技术,2010,29(3):179-183. HUANG Xin,BI Yixing,CHEN Yanfei,et al.Fire danger analysis of coal powder manufacture system in coal liquefaction project[J].Fire Science and Technology,2010,29(3):179-183.
[10]陈彦平.基于MATLAB的氨泄漏扩散动态模拟研究[D].淮南:安徽理工大学,2016.
[11]DOU Z,JIANG J C,WANG Z R,et al,Applications of RBI on leakage risk assessment of direct coal liquefaction process [J].Journal of Loss Prevention in the Process Industries,2021,45:194-202.
[12]ZHANG J,AN J Y,WEN Z H,et al,Numerical investigation of coal self-heating in longwall goaf considering airflow leakage from mining induced crack [J].Process Safety and Environmental Protection,2020,134:353-370.
[13]ZHANG J X,LIU Y W,REN P L,et al.A fully multifield coupling model of gas extraction and air leakage for in-seam borehole [J].Energy Reports,2021,7:1293-1305.
[14]LIU W,CHU X Y,CHEN W,et al.Oxidation reaction constants for coal spontaneous combustion under inert gas environments:an experimental investigation [J].Energy,2022,247:123457.
[15]张光生,杨日丽,刘伟杰.基于PHAST的煤制油可燃气压力储罐泄漏模拟分析[J].化工管理,2020(16):139-143. ZHANG Guangsheng,YANG Rili,LIU Weijie.Simulation analysis of pressure tank leakage of chemicals based on PHAST[J].Chemical Enterprise Management,2020(16):139-143.
[16]姚敏,方叶祥,汤卫林,等.煤制油基地安全激励因素识别及安全动机模型的实证研究[J].中国安全生产科学技术,2020,16(2):187-192. YAO Min,FANG Yexiang,TANG Weilin,et al.Empirical study on identification of safety incentive factors and safety motivation model for coal-to-liquids base[J].Journal of Safety Science and Technology,2020,16(2):187-192.
[17]张贝,徐克,赵云胜,等.危险化学品罐车泄漏事故伤害后果研究[J].安全与环境工程,2019,26(6):128-136. ZHANG Bei,XU Ke,ZHAO Yunsheng,et al.Research on damage consequences of dangerous chemical tanker leakage accident[J].Journal of Safety and Environment,2019,26(6):128-136.
[18]武江越,王斌,任翔宇,等.危险化学品泄漏入海区域风险评估方法研究[J].生态毒理学报,2019,14(1):189-198. WU Jiangyue,WANG Bin,REN Xiangyu,et al.Study on risk assessment methods of hazardous chemicals leaking into seas[J].Asian Journal of Ecotoxicology,2019,14(1):189-198.
[19]蒋代,华敏,潘旭海.危化品储罐区多灾种耦合效应风险分析[J].中国安全生产科学技术,2018,14(9):144-150. JIANG Dai,HUA Min,PAN Xuhai.Risk analysis on multi-disaster coupling effect in storage tank area of dangerous chemicals[J].Journal of Safety Science and Technology,2018,14(9):144-150.
[20]马良俊,魏利军,易高翔,等.危化品事故应急辅助决策支持系统的研究[J].中国安全生产科学技术,2009,5(5):23-26. MA Liangjun,WEI Lijun,YI Gaoxiang,et al.Research on hazardous chemicals emerency decision making support software system[J].Journal of Safety Science and Technology,2009,5(5):23-26.
[21]丁德武,邹兵,高少华,等.危化品突发泄漏事故应急检测标准化作业研究[J].中国安全生产科学技术,2010,6(4):61-64. DING Dewu,ZOU Bing,GAO Shaohua,et al.Research on standard operation procedure of emergency inspection in hazardous chemicals leakage accident[J].Journal of Safety Science and Technology,2010,6(4):61-64.
[22]陈增强,高艺博,陈成功,等.基于差分进化-NM单纯形法的危化品泄漏源定位[J].中国安全生产科学技术,2022,18(5):90-95. CHEN Deqiang,GAO Yibo,CHEN Chenggong,et al.Location for leakage source of hazardous chemicals based on differential evolution-NM simplex method[J].Journal of Safety Science and Technology,2022,18(5):90-95.
[23]文仁强,黄全义,黄东海.危化品泄漏扩散预测模型与GIS集成及其在应急决策中的应用研究[J].测绘通报,2008,4:52-54. WEN Renqiang,HUANG Quanyi,HUANG Donghai.A research on the outburst discharging forecast model of dangerous chemical based on GIS to meet an emergency platform[J].Bulletin of Surveying and Mapping,2008,4:52-54.
[24]赵江平,田辉.近海复杂水体下海底输氢管道小孔泄漏扩散规律研究[J].中国安全生产科学技术,2024,20(2):75-81. ZHAO Jiangping,TIAN Hui.Study on leakage and diffusion law of small hole in submarine hydrogen pipeline under complex offshore water body [J].Journal of Safety Science and Technology,2024,20(2):75-81.
[25]陈国华,黄庭枫,陈文江,等.基于真三维GIS的危险化学气体泄漏扩散动态模拟仿真系统[J].中国安全生产科学技术,2013,9(1):113-118. CHEN Guohua,HUANG Tingfeng,CHEN Wenjiang,et al.Dynamic simulation system of leakage and diffusion of hazardous chemical gas based on real 3D GIS [J].Journal of Safety Science and Technology,2013,9(1):113-118.
[26]杨守国,姚亚金,庞拾亿,等.基于轨迹交叉理论的煤矿事故分析[J].煤炭工程,2019,51(5):177-180. YANG Shouguo,YAO Yajin,PANG Shiyi,et al.Analysis of coal mine accidents based on trace intersecting theory[J].Coal Engineering,2019,51(5):177-180.
[27]赵开功,李彦平.我国煤炭资源安全现状分析及发展研究[J].煤炭工程,2018,50(10):185-189. ZHAO Kaigong,LI Yanping.Analysis and development suggestion for coal resources safety in China[J].Coal Engineering,2018,50(10):185-189.
[28]赵开功,张晓蕾,李曼,等.基于一体化运营综合能源企业智能应急救援技术研究[J].中国安全生产科学技术,2022,18(5):235-240. ZHAO Kaigong,ZHANG Xiaolei,LI Man,et al.Research on intelligent emergency rescue technology of comprehensive energy enterprise based on integrated operation[J].Journal of Safety Science and Technology,2022,18(5):235-240.
[29]赵开功,方衡.一体化运营综合能源集团智能应急指挥平台研究与实现[J].矿业安全与环保,2021,46(6):58-64. ZHAO Kaigong,FANG Heng.Research and implementation of intelligent emergency command platform of integrated energy group[J].Mining Safety and Environmental Protection,2021,46(6):58-64.
[30]赵开功.煤制油可燃气泄漏风险分析方法与协同救援技术研究[D].北京:北京科技大学,2023.

相似文献/References:

备注/Memo

备注/Memo:
收稿日期: 2023-07-21
* 基金项目: 国家重点研发计划项目(2021YFC3001201,2016YFC0801805)
作者简介: 张晓蕾,博士研究生,高级工程师,主要研究方向为安全生产与应急管理理论与技术。
通信作者: 赵开功,博士,高级工程师,主要研究方向为应急救援、职业健康、安全信息化和安全生产理论与技术。
更新日期/Last Update: 2024-05-30